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1

Lee, C. F., and L. T. Hsiao. "Endofem Integrated Methodology for Fatigue Crack Growth." Journal of Mechanics 18, no. 2 (June 2002): 89–94. http://dx.doi.org/10.1017/s1727719100002057.

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AbstractIn this paper, the FEM with the incremental endochronic cyclic plasticity (EndoFEM) and the rc controlled node-released strategy are employed to study the fatigue crack opened/closed load (Pop) of Al 2024-T3 CCT specimens provided by Mageed and Pandey under several crack lengths and the constant amplitude with various load ratio (R). After statisfactory results are achieved by comparisons of computed Pop values and cited experimental data, the simulations will be extended to the crack lengths with significant bending effect due to short ligaments or high peak (Pmax) or high positive or very low negative R cyclic loads. Through these simulations, the complete map of Pop/Pmax vs. Kmax and R can be constructed and thereafter its correspondant empirical formulae can be proposed. Using these formulae and selecting the traditional fatigue crack growth parameter ΔKeff, the Al 2024-T3 fatigue crack growth rate da/dN vs. ΔK and R data, provided by Hiroshi and Schijve, can be employed to proposed empirical formulae of da/dN vs. ΔKeff and R. After integration, fatigue-crack-growth length a vs. N curves computed by EndoFEM can be obtained. The results are agreed very well with the existing experimental curves.According to the above procedures of simulation and steps of comparions with experiment, this paper may provides an integrate methodology of numerical simulation in the studies of fatigue crack growth for academic and industrial researches and design analysis.
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2

Ledeczi, Akos, James Davis, Sandeep Neema, and Aditya Agrawal. "Modeling methodology for integrated simulation of embedded systems." ACM Transactions on Modeling and Computer Simulation 13, no. 1 (January 2003): 82–103. http://dx.doi.org/10.1145/778553.778557.

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3

Yost, Jeff, Michael M. Marefat, and Jinwoo Kim. "Dynamic, Simulation-Integrated, Intelligent Visualization: Methodology and Applications to Ecosystem Simulation." IFAC Proceedings Volumes 28, no. 15 (June 1995): 215–20. http://dx.doi.org/10.1016/s1474-6670(17)45235-9.

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4

Ramos, Daniel, Luis Almeida, and Ubirajara Moreno. "Integrated Robotic and Network Simulation Method." Sensors 19, no. 20 (October 21, 2019): 4585. http://dx.doi.org/10.3390/s19204585.

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The increasing use of mobile cooperative robots in a variety of applications also implies an increasing research effort on cooperative strategies solutions, typically involving communications and control. For such research, simulation is a powerful tool to quickly test algorithms, allowing to do more exhaustive tests before implementation in a real application. However, the transition from an initial simulation environment to a real application may imply substantial rework if early implementation results do not match the ones obtained by simulation, meaning the simulation was not accurate enough. One way to improve accuracy is to incorporate network and control strategies in the same simulation and to use a systematic procedure to assess how different techniques perform. In this paper, we propose a set of procedures called Integrated Robotic and Network Simulation Method (IRoNS Method), which guide developers in building a simulation study for cooperative robots and communication networks applications. We exemplify the use of the improved methodology in a case-study of cooperative control comparison with and without message losses. This case is simulated with the OMNET++/INET framework, using a group of robots in a rendezvous task with topology control. The methodology led to more realistic simulations while improving the results presentation and analysis.
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5

Chlamtac, Imrich, and Aura Ganz. "An experimental methodology for integrated services systems." Communications in Statistics. Stochastic Models 5, no. 4 (January 1989): 745–63. http://dx.doi.org/10.1080/15326348908807132.

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6

Ontiveros, Victor, Adrien Cartillier, and Mohammad Modarres. "An Integrated Methodology for Assessing Fire Simulation Code Uncertainty." Nuclear Science and Engineering 166, no. 3 (November 2010): 179–201. http://dx.doi.org/10.13182/nse10-05.

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7

Pfahl, Dietmar, and G�nther Ruhe. "IMMoS: a methodology for integrated measurement, modelling and simulation." Software Process: Improvement and Practice 7, no. 3-4 (September 2002): 189–210. http://dx.doi.org/10.1002/spip.164.

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8

Cavalcanti, Hercílio M., and Leandro Manera. "A Simulation Methodology for Wirebonds Interconnects of Radiofrequency Integrated Circuits." Journal of Integrated Circuits and Systems 10, no. 3 (December 28, 2015): 181–86. http://dx.doi.org/10.29292/jics.v10i3.421.

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This work presents a methodology for the simulation of bonding wires under the circumstance when signals with RF frequencies are employed and thus, the impedances of the parasitic resistances, capacitances and inductances of these interconnections are no longer negligible. A s-parameters extraction strategy for each of the wirebonds will be shown with the help of Agilent’s EM simulator ADS resulting in a netlist in spectre which will be used in the test-bench of the designed IC to emulate the behavior of the bondwires and thus making possible a proper dimensioning and tuning of the RF chip to ensure a better performance of the encapsulated RF IC. Finally the design example of a power amplifier is proposed and some aspects of the interaction of this block with the wirebonds are studied.
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9

Feligiotti, M., E. Hack, and G. Lampeas. "Methodology for assessing impact damage using integrated simulation and experimentation." EPJ Web of Conferences 6 (2010): 46008. http://dx.doi.org/10.1051/epjconf/20100646008.

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10

Shaheen, Ahmed A., Aminah Robinson Fayek, and Simaan M. AbouRizk. "Methodology for integrating fuzzy expert systems and discrete event simulation in construction engineering." Canadian Journal of Civil Engineering 36, no. 9 (September 2009): 1478–90. http://dx.doi.org/10.1139/l09-091.

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This paper demonstrates how fuzzy expert systems can be integrated within discrete event simulation models to enhance their modeling and predictive capabilities for construction engineering applications. A proposed methodology is presented for extracting the information from experts to develop the fuzzy expert system rules. The developed fuzzy expert system is integrated within a discrete event simulation model to enhance its modeling capability by explicitly accounting for the different factors affecting some of the simulation activities. A tunneling case study is used to illustrate the features of the integrated system. The outputs generated from the integrated system are very comparable to those from the original probabilistic simulation model. The integrated system represents a more realistic modeling scenario, since it thoroughly accounts for the different factors affecting the tunnel boring machine (TBM) advance rate. This paper is relevant to researchers because it provides an advance in combining artificial intelligence techniques with simulation models to yield better tools for construction modeling. It is of relevance to practitioners because it provides a useful tool for modeling construction engineering problems.
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11

SAVORY, PAUL A., and GERALD T. MACKULAK. "THE IMPACT OF INTELLIGENT TOOLS ON SIMULATION METHODOLOGY." International Journal of Software Engineering and Knowledge Engineering 06, no. 01 (March 1996): 135–58. http://dx.doi.org/10.1142/s0218194096000077.

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Simulation is one of the most effective techniques for analyzing stochastic systems. Recent computer software and hardware advances have had an important impact on the traditional discrete-event simulation methodology. Intelligent simulation environments consisting of integrated sets of “intelligent” tools for performing simulation studies have emerged. These tools significantly impact the methodology of a simulation analysis. This paper defines these intelligent tools and discusses how they alter the simulation paradigm by illustrating the development of a simulation model using an intelligent simulation environment. Special emphasis is on how an intelligent simulation environment provides a responsive analysis technique for studying manufacturing systems.
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12

Guida, M., X. Li, A. Messina, and P. P. Strona. "Industrial integrated methodology for deep-drawing processes optimization by numerical simulation." Journal of Materials Processing Technology 45, no. 1-4 (September 1994): 323–28. http://dx.doi.org/10.1016/0924-0136(94)90360-3.

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13

Martinez, Gerardo Santillan, Tommi A. Karhela, Reino J. Ruusu, Seppo A. Sierla, and Valeriy Vyatkin. "An Integrated Implementation Methodology of a Lifecycle-Wide Tracking Simulation Architecture." IEEE Access 6 (2018): 15391–407. http://dx.doi.org/10.1109/access.2018.2811845.

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14

Sawhney, A. "An Integrated Modelling Methodology for Simulation of Large and Complex Systems." International Journal of Modelling and Simulation 20, no. 1 (January 2000): 1–11. http://dx.doi.org/10.1080/02286203.2000.11442133.

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15

Cai, Hao, Hervé Petit, and Jean-François Naviner. "A Hierarchical Reliability Simulation Methodology for AMS Integrated Circuits and Systems." Journal of Low Power Electronics 8, no. 5 (December 1, 2012): 697–705. http://dx.doi.org/10.1166/jolpe.2012.1228.

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16

Klima, Bernd, Arno Huss, and Michael Nöst. "Integrated methodology for simulation and measurement of the diesel hybrid potential." ATZ worldwide 111, no. 2 (February 2009): 50–56. http://dx.doi.org/10.1007/bf03225162.

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17

Camargo, Cristina P., Rolf Gemperli, and José Otavio Costa Auler Junior. "Learning methodology in surgical training." Revista de Medicina 97, no. 1 (March 15, 2018): 7–11. http://dx.doi.org/10.11606/issn.1679-9836.v97i1p7-11.

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This manuscript aimed to review the literature data related to the surgical training program. This review showed some of the requirements to perform effective surgical training were direct supervision, predetermined repetitions according to surgical skill complexity, valid simulator models, number of students per model. This manuscript discussed how the surgical program could achieve competence using a critical thinking framework, integrated curriculum based on the rationale behind simulation training program.
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18

Petronijević, Jelena, Milica Petrović, Najdan Vuković, Marko Mitić, Bojan Babić, and Zoran Miljković. "Integrated Process Planning and Scheduling Using Multi-Agent Methodology." Applied Mechanics and Materials 834 (April 2016): 193–98. http://dx.doi.org/10.4028/www.scientific.net/amm.834.193.

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Market growth and mass customization cause a need for a change in traditional manufacturing. Decentralized decision making and integration of process planning is necessary in order to become concurrent in the market. The paper presents decentralized decision making methodology using multi-agent systems. The model is used for integrated process planning and scheduling based on the minimum processing time under dynamic change of the environment. Two types of disturbance are used to represent the change: part arrival and machine breakdown. The proposed model comprises part agent, job agent, machine agent and optimization agent. Comparative analysis is conducted using simulation in AnyLogic software in order to verify the proposed approach.
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19

Pérez Arroyo, Carlos, Jérôme Dombard, Florent Duchaine, Laurent Gicquel, Benjamin Martin, Nicolas Odier, and Gabriel Staffelbach. "Towards the Large-Eddy Simulation of a full engine: Integration of a 360 azimuthal degrees fan, compressor and combustion chamber. Part I: Methodology and initialisation." Journal of the Global Power and Propulsion Society, May (May 25, 2021): 1–16. http://dx.doi.org/10.33737/jgpps/133115.

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Optimising the design of aviation propulsion systems using computational fluid dynamics is essential to increase their efficiency and reduce pollutant as well as noise emissions. Nowadays, and within this optimisation and design phase, it is possible to perform meaningful unsteady computations of the various components of a gas-turbine engine. However, these simulations are often carried out independently of each other and only share averaged quantities at the interfaces minimising the impact and interactions between components. In contrast to the current state-of-the-art, this work presents a 360 azimuthal degrees large-eddy simulation with over 2100 million cells of the DGEN-380 demonstrator engine enclosing a fully integrated fan, compressor and annular combustion chamber at take-off conditions as a first step towards a high-fidelity simulation of the full engine. In order to carry such a challenging simulation and reduce the computational cost, the initial solution is interpolated from stand-alone sectoral simulations of each component. In terms of approach, the integrated mesh is generated in several steps to solve potential machine dependent memory limitations. It is then observed that the 360 degrees computation converges to an operating point with less than 0.5% difference in zero-dimensional values compared to the stand-alone simulations yielding an overall performance within 1% of the designed thermodynamic cycle. With the presented methodology, convergence and azimuthally decorrelated results are achieved for the integrated simulation after only 6 fan revolutions.
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20

Sirakoulis, G. Ch, I. Karafyllidis, and A. Thanailakis. "A cellular automaton methodology for the simulation of integrated circuit fabrication processes." Future Generation Computer Systems 18, no. 5 (April 2002): 639–57. http://dx.doi.org/10.1016/s0167-739x(01)00061-9.

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21

Kwon, Se Jung, Changho Sung, Hae-Sang Song, and Tag Gon Kim. "Integrated Hybrid Modeling Methodology and Simulation Engine Design Based on HDEVS Formalism." Journal of the Korea Society for Simulation 22, no. 1 (March 31, 2013): 21–30. http://dx.doi.org/10.9709/jkss.2013.22.1.021.

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22

Lee, In. "An integrated economic decision and simulation methodology for e-recruiting process redesign." International Journal of Simulation and Process Modelling 1, no. 3/4 (2005): 179. http://dx.doi.org/10.1504/ijspm.2005.007648.

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23

Shin, Jong Gye, and Sug Je Sohn. "Evolutionary Simulation-Based-Design (ESBD) methodology for large computer integrated manufacturing systems." International Journal of Computer Integrated Manufacturing 14, no. 4 (January 2001): 385–98. http://dx.doi.org/10.1080/09511920010020758.

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24

Paquet, Victor, and Li Lin. "An integrated methodology for manufacturing systems design using manual and computer simulation." Human Factors and Ergonomics in Manufacturing 13, no. 1 (2003): 19–40. http://dx.doi.org/10.1002/hfm.10026.

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25

Cerrolaza, M., G. Gavidia, E. Soudah, and M. Martín-Landrove. "MODELING HUMAN TISSUES: AN EFFICIENT INTEGRATED METHODOLOGY." Biomedical Engineering: Applications, Basis and Communications 26, no. 01 (February 2014): 1450012. http://dx.doi.org/10.4015/s1016237214500124.

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Geometric models of human body organs are obtained from imaging techniques like computed tomography (CT) and magnetic resonance image (MRI) that oallow an accurate visualization of the inner body, thus providing relevant information about their its structure and pathologies. Next, these models are used to generate surface and volumetric meshes, which can be used further for visualization, measurement, biomechanical simulation, rapid prototyping and prosthesis design. However, going from geometric models to numerical models is not an easy task, being necessary to apply image-processing techniques to solve the complexity of human tissues and to get more simplified geometric models, thus reducing the complexity of the subsequent numerical analysis. In this work, an integrated and efficient methodology to obtain models of soft tissues like gray and white matter of brain and hard tissues like jaw and spine bones is proposed. The methodology is based on image-processing algorithms chosen according to some characteristics of the tissue: type, intensity profiles and boundaries quality. First, low-quality images are improved by using enhancement algorithms to reduce image noise and to increase structures contrast. Then, hybrid segmentation for tissue identification is applied through a multi-stage approach. Finally, the obtained models are resampled and exported in formats readable by computer aided design (CAD) tools. In CAD environments, this data is used to generate discrete models using finite element methed (FEM) or other numerical methods like the boundary element method (BEM). Results have shown that the proposed methodology is useful and versatile to obtain accurate geometric models that can be used in several clinical cases to obtain relevant quantitative and qualitative information.
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26

Li, Rong, Xue Feng Chen, Guo Fu Ding, Jian Jun Liu, and Xiao Bo Jin. "Development of an Integrated System of Geometric Modeling and Machining Simulation of End Mill." Applied Mechanics and Materials 120 (October 2011): 74–80. http://dx.doi.org/10.4028/www.scientific.net/amm.120.74.

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An integrated system of geometric modeling and machining simulation of end mills is presented for supporting end mill’s cutting analysis, structural optimization and digital manufacturing. In order to obtain accurate structural models, the main elements and detail features of end mills are modeled precisely, based on modular design and parametric design methodology. Through integrates 2D tool path and 3D virtual machining simulation seamlessly, a comprehensive simulation platform is constructed. To ensure the accuracy of manufacturing simulation model, the machining simulation model is compared to ideal design model. The results verify the correctness and rationality of the geometric modeling and machining simulation. NC codes generated by machining simulation can be output to tool grinder, supporting digital manufacturing of end mills.
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27

Bahar, A., and M. Kelkar. "Journey From Well Logs/Cores to Integrated Geological and Petrophysical Properties Simulation: A Methodology and Application." SPE Reservoir Evaluation & Engineering 3, no. 05 (October 1, 2000): 444–56. http://dx.doi.org/10.2118/66284-pa.

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Summary Reservoir studies performed in the industry are moving towards an integrated approach. Most data available for this purpose are mainly from well cores and/or well logs. The translation of these data into petrophysical properties, i.e., porosity and permeability, at interwell locations that are consistent with the underlying geological description is a critical process. This paper presents a methodology that can be used to achieve this goal. The method has been applied at several field applications where full reservoir characterization study is conducted. The framework developed starts with a geological interpretation, i.e., facies and petrophysical properties, at well locations. A new technique for evaluating horizontal spatial relationships is provided. The technique uses the average properties of the vertical data to infer the low-frequency characteristics of the horizontal data. Additionally, a correction in calculating the indicator variogram, that is used to capture the facies' spatial relationship, is provided. A new co-simulation technique to generate petrophysical properties consistent with the underlying geological description is also developed. The technique uses conditional simulation tools of geostatistical methodology and has been applied successfully using field data (sandstone and carbonate fields). The simulated geological descriptions match well the geologists' interpretation. All of these techniques are combined into a single user-friendly computer program that works on a personal computer platform. Introduction Reservoir characterization is the process of defining reservoir properties, mainly, porosity and permeability, by integration of many data types. An ultimate goal of reservoir characterization is improved prediction of the future performance of the reservoir. But, before we reach that goal a journey through various processes must come to pass. The more exhaustive the processes, the more accurate the prediction will be. The most important processes in this journey are the incorporation and analysis of available geological information.1–3 The most common data types available for this purpose are in the form of well logs and/or well cores. The translation of these data into petrophysical properties, i.e., porosity and permeability, at interwell locations that are consistent with the underlying geological description is a critical step. The work presented in this paper provides a methodology to achieve this goal. This methodology is based on the geostatistical technique of conditional simulation. The step-by-step procedure starts with the work of the geologist where the isochronal planes across the whole reservoir are determined. This step is followed by the assignment of facies and petrophysical properties at well locations for each isochronal interval. Using these results, spatial analysis of the reservoir attributes, i.e., facies, porosity, and permeability, can be conducted in both vertical and horizontal directions. Due to the nature of how the data are typically distributed, i.e., abundant in the vertical direction but sparse in the horizontal direction, this step is far from a simple task, and practitioners have used various approximations to overcome this problem.4–6 A new technique for evaluating the horizontal spatial relationship is proposed in this work. The technique uses the average properties of the vertical data to infer the low-frequency characteristics of the horizontal data. Additionally, a correction in calculating the indicator variogram, that is used to capture the facies spatial relationship, is provided. Once the spatial relationship of the reservoir attributes has been established, the generation of internally consistent facies and petrophysical properties at the gridblock level can be done through a simulation process. Common practice in the industry is to perform conditional simulation of petrophysical properties by adapting a two-stage approach.7–10 In the first stage, the geological description is simulated using a conditional simulation technique such as sequential indicator simulation or Gaussian truncated simulation. In the second stage, petrophysical properties are simulated for each type of geological facies/unit using a conditional simulation technique such as sequential Gaussian simulation or simulated annealing. The simulated petrophysical properties are then filtered using the generated geological simulation to produce the final simulation result. The drawback of this approach is its inefficiency, since it requires several simulations, and hence, intensive computation time. Additionally, the effort to jointly simulate or to co-simulate interdependent attributes such as facies, porosity, and permeability has been discussed by several authors.11–13 The techniques used by these authors have produced useful results. Common disadvantages of these techniques are the requirement of tedious inference and modeling of covariances and cross covariances. Also, a large amount of CPU time is required to solve the numerical problem of a large co-kriging system. Another co-simulation technique that eliminates the requirement of solving the full co-kriging system has been proposed by Almeida.14 The technique is based on a collocated co-kriging and a Markov-type hypothesis. This hypothesis simplifies the inference and modeling of the cross covariances. Since the collocated technique is used, an assumption of a linear relationship among the attributes needs to be applied. The co-simulation technique developed in this work avoids the two-stage approach described above. The technique is based on a combination of simultaneous sequential Gaussian simulations and a conditional distribution technique. Using this technique there is no large co-kriging system to solve and there is no need to assume a relationship among reservoir attributes. The absence of co-kriging from the process also means that the user is free from developing the cross variograms. This improves the practical application of the technique.
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28

RAMOS-QUINTANA, FERNANDO, JUAN FRAUSTO-SOLIS, and FRANCISCO CAMARGO-SANTACRUZ. "A METHODOLOGY FOR MODELING INTERACTIONS IN COOPERATIVE INFORMATION SYSTEMS USING COLOURED PETRI NETS." International Journal of Software Engineering and Knowledge Engineering 12, no. 06 (December 2002): 619–35. http://dx.doi.org/10.1142/s0218194002001104.

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Анотація:
Cooperative Information Systems (CIS) become relevant to integrate different kinds of systems so as to work collaboratively for a common goal. CIS are considered by nature as dynamic systems, and one of the most difficult problems is how to model and control multiple simultaneous interactions among agents in a friendly way. Consequently, expressiveness becomes a problem related to the representation so far, the similar systems cope neither with the problem of expressiveness nor with multiple interactions in a satisfactory way. It is proposed an integrated methodology based on Coloured Petri Nets (CPN) in order to model the interaction mechanism in a CIS and reduce the associated complexity in the representation of the dynamic of the system. The methodology integrates mainly: (a) the action basic loop in order to represent the system interactions and to model organization conversations, (b) the CPN in the interaction design and system simulation, (c) the communicative acts of FIPA (Foundation for Intelligent Physical Agents), included in the Agent Communication Language Specification.
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29

Grau, P., P. Vanrolleghem, and E. Ayesa. "BSM2 Plant-Wide Model construction and comparative analysis with other methodologies for integrated modelling." Water Science and Technology 56, no. 8 (October 1, 2007): 57–65. http://dx.doi.org/10.2166/wst.2007.602.

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In this paper, a new methodology for integrated modelling of the WWTP has been used for the construction of the Benchmark Simulation Model N°2 (BSM2). The transformations-approach proposed in this methodology does not require the development of specific transformers to interface unit process models and allows the construction of tailored models for a particular WWTP guaranteeing the mass and charge continuity for the whole model. The BSM2 PWM constructed as case study, is evaluated by means of simulations under different scenarios and its validity in reproducing water and sludge lines in WWTP is demonstrated. Furthermore the advantages that this methodology presents compared to other approaches for integrated modelling are verified in terms of flexibility and coherence.
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30

Song, Lingguang, Hussien T. Al-Battaineh, and Simaan M. AbouRizk. "Modeling uncertainty with an integrated simulation system." Canadian Journal of Civil Engineering 32, no. 3 (June 1, 2005): 533–42. http://dx.doi.org/10.1139/l05-004.

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Анотація:
Uncertainty inevitably affects the performance of a construction project. The ability to identify uncertainty and quantitatively evaluate its impact on the project performance can significantly enhance the accuracy and reliability of a project plan. This paper describes a methodology to classify, model, and reduce uncertainty. This method was implemented within an integrated simulation framework capable of capturing physical features of the facility to be constructed, uncertainty in the working environment, and the construction processes. A "virtual" steel fabrication shop model was developed using the proposed framework to model uncertainty in a steel fabrication shop environment. The artificial neural network (ANN) modeling technique, which plays a significant role in the simulation model, was used to model activity duration based on the identified productivity influencing factors and data collected through a time study project conducted in the fabrication shop. The virtual shop model with the embedded ANN model proved to be more accurate than the traditional approach of modeling activity duration using statistical distributions.Key words: uncertainty, classification, modeling, simulation, neural networks.
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31

BAUMGARTNER, C., and O. A. PALUSINSKI. "METHODOLOGY FOR FORMULATION OF CIRCUIT EQUATIONS FOR SPECTRAL ANALYSIS." Journal of Circuits, Systems and Computers 02, no. 02 (June 1992): 187–206. http://dx.doi.org/10.1142/s0218126692000131.

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Анотація:
While analog simulation of integrated circuits is a very powerful design tool, the maximum size of the investigated circuits is limited by the necessary CPU times. Using spectral technique with respect to Chebyshev polynomials and in conjunction with waveform relaxation was shown to considerably reduce the computational effort for transient simulation. After a brief introduction of this novel simulation technique, equation formulation will be described in detail. Also discussed is how the choice of circuit variables used for formulation affects theoretical and numerical properties of the method. Element “stamps” are given which can be used for the construction and solution of the linear equation system.
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32

Guzeev, Viktor I., and Danil Yu Pimenov. "Methodology of designing integrated technological processes for manufacturing CNC machined parts." MATEC Web of Conferences 224 (2018): 01057. http://dx.doi.org/10.1051/matecconf/201822401057.

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Анотація:
The article presents a new approach to the design of technological processes of processing parts on metal cutting machines in the integrated production conditions based on the expected forecast of the parts processing accuracy. The stages of choosing the parameters of processing steps are combined with determining the parameters of the cutting tool and machining attachments by simulation modeling. The design sequence begins with the first operation.
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33

Guan, Wei, Zuo Jing Su, and Guo Qing Zhang. "CGSA Control Methodology Applied to Ship Integrated Rudder and Fin Stabilization System." Applied Mechanics and Materials 253-255 (December 2012): 2080–85. http://dx.doi.org/10.4028/www.scientific.net/amm.253-255.2080.

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Анотація:
In this paper, a mathematical model for ship rudder and fin integrated control system is present. The closed gain shaping algorithm (CGSA) strategy is applied to design an integrated rudder and fin stabilizer to overcome the arbitrary selection of weighting function in H∞ mixed sensitivity robust controller design procedures. The CGSA methods give a relatively more concise and reliable design method for the ship rudder and fin integrated control system. The simulation results show that the ship CGSA rudder/fin integrated controller can satisfactorily achieve roll motion reduction and yaw stabilization simultaneously as well as guarantee the levels of robust stability and control performance in the different sea conditions.
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34

Azadeh, Ali, Seyed Mohammad Asadzadeh, and Javad Seif. "An integrated simulation-analysis of variance methodology for effective analysis of CBM alternatives." International Journal of Computer Integrated Manufacturing 27, no. 7 (September 20, 2013): 624–37. http://dx.doi.org/10.1080/0951192x.2013.834466.

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35

Filippov, Ivan, Nikolay Duchenko, and Yuri Gimpilevich. "Particularities of complex-functional monolithic integrated circuits post-layout simulation." ITM Web of Conferences 30 (2019): 01003. http://dx.doi.org/10.1051/itmconf/20193001003.

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Анотація:
This paper presents a silicon-based complex-functional monolithic microwave integrated circuits (MMICs) design methodology. Post-layout simulation stage particularities are discussed. Pre-tapeout functionality verification results of the C-band phase and amplitude control MMIC based on 0.18 μm SiGe BiCMOS technology are also presented.
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36

Chen, Chien-Ming, and Jan van Dalen. "Measuring dynamic efficiency: Theories and an integrated methodology." European Journal of Operational Research 203, no. 3 (June 2010): 749–60. http://dx.doi.org/10.1016/j.ejor.2009.09.001.

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37

Dossis, M. "High-level Synthesis Integrated Verification." Engineering, Technology & Applied Science Research 5, no. 5 (October 4, 2015): 864–70. http://dx.doi.org/10.48084/etasr.596.

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Анотація:
It is widely known in the engineering community that more than 60% of the IC design project time is spent on verification. For the very complex contemporary chips, this may prove prohibitive for the IC to arrive at the correct time in the market and therefore, valuable sales share may be lost by the developing industry. This problem is deteriorated by the fact that most of conventional verification flows are highly repetitive and a great proportion of the project time is spent on last-moment simulations. In this paper we present an integrated approach to rapid, high-level verification, exploiting the advantages of a formal High-level Synthesis tool, developed by the author. Verification in this work is supported at 3 levels: high-level program code, RTL simulation and rapid, generated C testbench execution. This paper is supported by strong experimental work with 3-4 popular design synthesis and verification that proves the principles of our methodology.
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38

Petrosyants, Konstantin O., Igor A. Kharitonov, and Nikita I. Ryabov. "Electro-Thermal Design of Smart Power Devices and Integrated Circuits." Advanced Materials Research 918 (April 2014): 191–94. http://dx.doi.org/10.4028/www.scientific.net/amr.918.191.

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Анотація:
An efficient methodology of electro-thermal design of smart power semiconductor devices and ICs, based on the combined use of SPICE circuit analysis tool and software tools for 2D/3D thermal simulation of IC chip construction, is presented. The features of low, medium and high power elements, temperature sensors, IC chips simulation are considered.
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39

Pedercini, Matteo, Holger Maximilian Kleemann, Nombuso Dlamini, Vangile Dlamini, and Birgit Kopainsky. "Integrated simulation for national development planning." Kybernetes 48, no. 1 (January 14, 2019): 208–23. http://dx.doi.org/10.1108/k-11-2017-0440.

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Анотація:
Purpose The purpose of this papers is to highlight the applicability of integrated simulation models for national development planning to different issues and contexts. Specifically, the authors describe one such model, the Millennium Institute’s T21 model, which is used to support planning in various countries, and explore in detail the case of Swaziland to demonstrate the model’s usefulness at different levels in the planning process. Design/methodology/approach Integrated sustainable development planning models using the system dynamics (SD) modeling method have been designed to help overcome these obstacles and support decision-makers in the assessment of alternative policies. Such models are laboratory replicas of the critical mechanisms driving development in a country while being grounded in the historical data available. They can be used to perform simulation-based policy experiments that are otherwise impossible in the real world. Findings The proposed approach has facilitated the reporting on the Millennium Development Goals (MDGs), as well as on the cross-sector long-term ex ante evaluation of the country’s “Economic Recovery Strategy” and a proposed “Fiscal Adjustment” policy. These assessments provided essential information for improving the quality of the decisions made. Such information cannot be obtained by the application of purely economic models or sectoral tools, that are not including the fundamental feedback structures that shape development in the long run and determine its sustainability. Research limitations/implications The new generation of global long-term Sustainable Development Goals (SDGs) covers a far broader range of issues and indicators than the MDGs. The T21-Swaziland model only offers a limited subset of such issues, and future research will focus on achievements and challenges in expanding its scope to encompass the SDGs. Practical implications The T21 model has become one of the fundamental planning instruments of the country, and it has been used to evaluate national planning documents and other suggested strategies with respect to whether they are sufficient for reaching the long-term goals. Such information is then used as a basis for revision of development plans and adoption or rejection of suggested policy packages. Originality/value The MDGs (and their expanded follow-up, the SDGs) have been important step toward better governance, as they quantify key indicators of development and thereby allow for an evaluation of the degree to which these quantified aspirations are actually achieved. In addition to such hind-sight evaluations, ex ante evaluations are equally important for improvement of the quality of the decisions made. The authors propose and test a tool to support such type of evaluation, supporting integrated planning and model-based governance.
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40

Picard, Damien, and Loic Lagadec. "Multilevel Simulation of Heterogeneous Reconfigurable Platforms." International Journal of Reconfigurable Computing 2009 (2009): 1–12. http://dx.doi.org/10.1155/2009/162416.

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Анотація:
This paper presents a general system-level simulation and testing methodology for reconfigurable System-on-Chips, starting from behavioral specifications of system activities to multilevel simulations of accelerated tasks running on the reconfigurable circuit. The system is based on a common objectoriented environment that offers valuable debugging and probing facilities as well as integrated testing features. Our system brings these benefits to the hardware simulation, while enforcing validation through characterization tests and interoperability through on-demand mainstream tools connections. This framework has been partially developed in the scope of the EU Morpheus project and is used to validate our contribution to the spatial design task.
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41

Miletić, Slobodan, Marjan Milošević, and Vladimir Mladenović. "A new methodology for designing of tactical integrated telecommunications and computer networks for OPNET simulation." Scientific Technical Review 70, no. 2 (2020): 35–40. http://dx.doi.org/10.5937/str2002035m.

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Анотація:
This paper present a novel methodological approach in the design of integrated tactical telecommunications and computer networks for command information system and defining the elements for the OPNET simulation model. The elements proposed for design of network information architecture. For that purpose, the way established to set up relationships between elements that uses for network topologies design, building of network elements and network traffic. They are integrated with its parameters in the preliminary model defined by an OPNET simulation model. We propose the measure of efficiency for accomplishment of tactical command requirements to use the design model network. This measure of efficiency is mean time delay that described with mathematical relations, involving the communication parameters speed of generating traffic, packet size, link capacity and adequately reflects the projected network. Furthermore, the applications of the proposed approach and given instructions allow to designers full examination of the network architecture, and provide translation into preliminary model and design OPNET simulation model.
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42

Avansi, Guilherme Daniel, Célio Maschio, and Denis José Schiozer. "Simultaneous History-Matching Approach by Use of Reservoir-Characterization and Reservoir-Simulation Studies." SPE Reservoir Evaluation & Engineering 19, no. 04 (June 14, 2016): 694–712. http://dx.doi.org/10.2118/179740-pa.

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Summary Reservoir characterization is the key to success in history matching and production forecasting. Thus, numerical simulation becomes a powerful tool to achieve a reliable model by quantifying the effect of uncertainties in field development and management planning, calibrating a model with history data, and forecasting field production. History matching is integrated into several areas, such as geology (geological characterization and petrophysical attributes), geophysics (4D-seismic data), statistical approaches (Bayesian theory and Markov field), and computer science (evolutionary algorithms). Although most integrated-history-matching studies use a unique objective function (OF), this is not enough. History matching by simultaneous calibrations of different OFs is necessary because all OFs must be within the acceptance range as well as maintain the consistency of generated geological models during reservoir characterization. The main goal of this work is to integrate history matching and reservoir characterization, applying a simultaneous calibration of different OFs in a history-matching procedure, and keeping the geological consistency in an adjustment approach to reliably forecast production. We also integrate virtual wells and geostatistical methods into the reservoir characterization to ensure realistic geomodels, avoiding the geological discontinuities, to match the reservoir numerical model. The proposed methodology comprises a geostatistical method to model the spatial reservoir-property distribution on the basis of the well-log data; numerical simulation; and adjusting conditional realizations (models) on the basis of geological modeling (variogram model, vertical-proportion curve, and regularized well-log data). In addition, reservoir uncertainties are included, simultaneously adjusting different OFs to evaluate the history-matching process and virtual wells to perturb geological continuities. This methodology effectively preserves the consistency of geological models during the history-matching process. We also simultaneously combine different OFs to calibrate and validate the models with well-production data. Reliable numerical and geological models are used in forecasting production under uncertainties to validate the integrated procedure.
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43

Feligiotti, Mara, Erwin Hack, George Lampeas, Wei Zhuo Wang, John E. Mottershead, and Richard L. Burguete. "Use of Integrated Simulation and Experimentation to Quantify Impact Damage." Applied Mechanics and Materials 70 (August 2011): 51–56. http://dx.doi.org/10.4028/www.scientific.net/amm.70.51.

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Анотація:
The term damage can be generally defined as a change introduced into a system that affects its performance. Its identification and characterization is a valid help in deciding amongst continuing the operation or performing a repair or replacement of the system. A valid support to this decision is based on the use of well-known measurement techniques from Non-Destructive Testing and Evaluation (NDT&E). A well-established correlation between damage and features extracted from the measured data makes these techniques capable of providing information about the extent of the damage. However the prediction of the remaining useful life of a system by comparing full-filed measurements techniques and FEM analysis results is the challenge of an increasing number of research studies. The need of a guide for enumerating the extent of the damage has been the thrust to perform this work. A common methodology developed for both numerical and experimental studies will be presented. It consists of three main parts: proper selection of the parameter capable of describing the damage in a quantitative manner; several approaches to obtain results from measurement techniques and FEM analysis; and damage assessment making use of a quantitative comparison of FEM results only, full-field experimental results only, or comparison of FEM to experimental results. A different approach in damage assessment will be also presented making use of Zernike moment descriptors from which the severity of the damage is inferred. An example to illustrate the methodology will be shown.
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44

Cimmino, N., SS Ponnusamy, A. Garcia Garriga, and L. Mainini. "A modelling and simulation framework for the integrated design of aircraft systems." Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering 234, no. 10 (April 3, 2019): 1648–60. http://dx.doi.org/10.1177/0954410019835726.

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Анотація:
New technologies and complex systems are being developed in commercial aviation to meet strict requirements regarding fuel consumption, emissions and noise constraints. This motivates the development of multidisciplinary environments to efficiently manage the increasing complexity of the design process. Under the Clean Sky 2 initiative, the ModellIng and Simulation tools for Systems IntegratiON on Aircraft (MISSION) project aims to develop an integrated framework to holistically support the aircraft design, development and validation processes. Within the MISSION framework, this paper proposes a methodology to handle the integration between the aircraft level and the system level in the early phase of aircraft design. The methodology is demonstrated for the case of the Landing Gear System in the rejected take-off scenario.
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45

Bukhari, Hatim, Pamela Andreatta, Brian Goldiez, and Luis Rabelo. "A Framework for Determining the Return on Investment of Simulation-Based Training in Health Care." INQUIRY: The Journal of Health Care Organization, Provision, and Financing 54 (January 1, 2017): 004695801668717. http://dx.doi.org/10.1177/0046958016687176.

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Анотація:
This article describes a framework that has been developed to monetize the real value of simulation-based training in health care. A significant consideration has been given to the incorporation of the intangible and qualitative benefits, not only the tangible and quantitative benefits of simulation-based training in health care. The framework builds from three works: the value measurement methodology (VMM) used by several departments of the US Government, a methodology documented in several books by Dr Jack Phillips to monetize various training approaches, and a traditional return on investment methodology put forth by Frost and Sullivan, and Immersion Medical. All 3 source materials were adapted to create an integrated methodology that can be readily implemented. This article presents details on each of these methods and how they can be integrated and presents a framework that integrates the previous methods. In addition to that, it describes the concept and the application of the developed framework. As a test of the applicability of the framework, a real case study has been used to demonstrate the application of the framework. This case study provides real data related to the correlation between the pediatric patient cardiopulmonary arrest (CPA) survival rates and a simulation-based mock codes at the University of Michigan tertiary care academic medical center. It is important to point out that the proposed framework offers the capability to consider a wide range of benefits and values, but on the other hand, there are several limitations that has been discussed and need to be taken in consideration.
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46

Yusishen, Tim, Amin Hajihosseinlu, Mathias Pielahn, Iman Kaffashan, Azita Fazelkhah, and Dharshana Muthumuni. "Feasibility of PV Integrated Microgrids in Remote North Canadian Communities." International Journal of Smart Grid and Sustainable Energy Technologies 3, no. 2 (December 24, 2019): 112–20. http://dx.doi.org/10.36040/ijsgset.v3i2.1261.

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Анотація:
In this paper a methodology for a transition away from a fossil fuel dependency to clean energy in remote communities in northern Canada is presented. Both technical and non-technical obstacles associated with such a transition to clean energy are outlined. A proposal on how to possibly overcome these obstacles is also presented. The technical aspect of this work includes a case study on one of the communities in northern Manitoba, Canada. The case study is supported by simulations, using the software tool PSCADTM/EMTDCTM. The simulation result illustrates how the control system coordinates various parts of a microgrid and reduces annual diesel consumption.
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47

Kalogeropoulos, Kleomenis, Nikolaos Stathopoulos, Athanasios Psarogiannis, Evangelos Pissias, Panagiota Louka, George P. Petropoulos, and Christos Chalkias. "An Integrated GIS-Hydro Modeling Methodology for Surface Runoff Exploitation via Small-Scale Reservoirs." Water 12, no. 11 (November 13, 2020): 3182. http://dx.doi.org/10.3390/w12113182.

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Анотація:
Efficient and sustainable exploitation of water resources requires the adoption of innovative and contemporary management techniques, a need that becomes even more demanding due to climate change and increasing pressures coming from anthropogenic activities. An important outcome of this reality is the qualitative and quantitative degradation of groundwater, which clearly indicates the need to exploit surface runoff. This study presents an integrated Geographic Information System (GIS)-based methodological framework for revealing and selecting suitable locations to build small-scale reservoirs and exploit surface runoff. In this framework, the SWAT model was used to quantify surface runoff, followed by the simulation of reservoir scenarios through reservoir simulation software. Andros Island (located in Cyclades Prefecture), Greece was selected as the study area. The obtained results indicated the most suitable location for creating a reservoir for maximizing exploitation of surface runoff, based on the specific water demands of the nearby areas and the existing meteorological, hydrological, and geological background potential. Thus, two selected dam locations are analyzed by using the proposed framework. The findings showed that the first dam site is inappropriate for creating a reservoir, as it cannot meet the demand for large water extraction volumes. In addition, the outcomes confirmed the efficiency of the proposed methodology in optimum selection of locations to construct small-scale water exploitation works. This research presents a contemporary methodological framework that highlights the capability of GIS, SWAT modeling, and reservoir simulation coupling in detecting optimal locations for constructing small reservoirs.
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48

Koleva, E., G. Kolev, and L. Koleva. "Processing diagram for powder bed additive manufacturing." Journal of Physics: Conference Series 2443, no. 1 (February 1, 2023): 012002. http://dx.doi.org/10.1088/1742-6596/2443/1/012002.

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Анотація:
Abstract This paper presents the developed software for processing parameter simulation and optimization of powder bed additive manufacturing by concentrated energy beams. The simulations are realized by implementation of a normalized processing diagram and analytical model simulating heating of powder layers by a moving linear heat source. Their implementation is demonstrated for electron beam or laser additive manufacturing of industrial alloys. The developed software and the processing diagram provide a useful reference and methodology to support the selection of appropriate processing parameters during the early development stages of concrete powder bed additive manufacturing technology, building production digital twins or development of integrated process management system.
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49

Millo, Federico, Andrea Piano, Benedetta Peiretti Paradisi, Mario Rocco Marzano, Andrea Bianco, and Francesco C. Pesce. "Development and Assessment of an Integrated 1D-3D CFD Codes Coupling Methodology for Diesel Engine Combustion Simulation and Optimization." Energies 13, no. 7 (April 1, 2020): 1612. http://dx.doi.org/10.3390/en13071612.

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Анотація:
In this paper, an integrated and automated methodology for the coupling between 1D- and 3D-CFD simulation codes is presented, which has been developed to support the design and calibration of new diesel engines. The aim of the proposed methodology is to couple 1D engine models, which may be available in the early stage engine development phases, with 3D predictive combustion simulations, in order to obtain reliable estimates of engine performance and emissions for newly designed automotive diesel engines. The coupling procedure features simulations performed in 1D-CFD by means of GT-SUITE and in 3D-CFD by means of Converge, executed within a specifically designed calculation methodology. An assessment of the coupling procedure has been performed by comparing its results with experimental data acquired on an automotive diesel engine, considering different working points, including both part load and full load conditions. Different multiple injection schedules have been evaluated for part-load operation, including pre and post injections. The proposed methodology, featuring detailed 3D chemistry modeling, was proven to be capable assessing pollutant formation properly, specifically to estimate NOx concentrations. Soot formation trends were also well-matched for most of the explored working points. The proposed procedure can therefore be considered as a suitable methodology to support the design and calibration of new diesel engines, due to its ability to provide reliable engine performance and emissions estimations from the early stage of a new engine development.
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50

Goral, Benoit, Cyrille Gautier, and Alexandre Amédéo. "Simulation Methodology and Design Flow for Decoupling Optimization in Case of Design Reusing." International Symposium on Microelectronics 2015, no. 1 (October 1, 2015): 000312–17. http://dx.doi.org/10.4071/isom-2015-wa62.

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Анотація:
The following paper presents a simulation methodology for analyzing a power delivery network and optimizing the decoupling network of ball grid array integrated circuits like processors, or Field Programmable Gate Arrays. Simulation tools from commercial electronic computer aided design solution and the different models used for decoupling network design are presented and their efficiency demonstrated by correlating simulation results with measurement thanks to a dedicated hardware implementation on test vehicle. S parameters analysis of a particular plan equipped with SMA connectors on bare PCB and on the PCB associated with decoupling capacitors is realized allowing S12 parameter measurement. An integrated module of the commercial solution calculating mounted inductance of decoupling capacitors is also presented since it is a key element for decoupling optimization. Its performances are compared again with measurement by extraction of mounted inductance from S parameters. Design flow is then given for optimizing performances of a capacitor decoupling network in the specific case of reusing an electronic design. Surface occupied by decoupling components is highly reduced in a first place and its efficiency increased by reducing mounted inductance thanks to small rerouting operations. Performances of decoupling network are then analyzed in order to remove all unnecessary elements and reduce at the same time the space occupied by the decoupling network and the bill of material.
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