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Статті в журналах з теми "Complex and heterogeneous dynamic system"
Naumkina, Dina, Alexander Rostovtsev, and Alexandr Abramov. "Digital heterogeneous dynamic model of peled Coregonus peled Gmelin." Fisheries 2020, no. 5 (October 9, 2020): 80–85. http://dx.doi.org/10.37663/0131-6184-2020-5-80-85.
Повний текст джерелаLiu, Feng, and Yaguang Li. "Complex Nonlinear Dynamic System of Oligopolies Price Game with Heterogeneous Players Under Noise." International Journal of Bifurcation and Chaos 26, no. 11 (October 2016): 1650183. http://dx.doi.org/10.1142/s0218127416501832.
Повний текст джерелаNilsson, Jacob, Saleha Javed, Kim Albertsson, Jerker Delsing, Marcus Liwicki, and Fredrik Sandin. "AI Concepts for System of Systems Dynamic Interoperability." Sensors 24, no. 9 (May 3, 2024): 2921. http://dx.doi.org/10.3390/s24092921.
Повний текст джерелаLIU, HUI-MIN, PATRICK WANG, HONG-QIANG WANG, and XIANG LI. "DYNAMIC MANAGEMENT OF MULTIPLE CLASSIFIERS IN COMPLEX RECOGNITION SYSTEM." International Journal of Pattern Recognition and Artificial Intelligence 26, no. 04 (June 2012): 1250006. http://dx.doi.org/10.1142/s0218001412500061.
Повний текст джерелаWang, Jian, Xiaolin Qin, and Hongying Fang. "Virus-Information Coevolution Spreading Dynamics on Multiplex Networks." Complexity 2021 (March 5, 2021): 1–9. http://dx.doi.org/10.1155/2021/6624612.
Повний текст джерелаYalamova, Rossitsa. "Financial Engineering in Complex Dynamic Systems." Financial Engineering 1 (November 28, 2023): 345–52. http://dx.doi.org/10.37394/232032.2023.1.32.
Повний текст джерелаLi, Zhi Hua, Hong Guang Yang, Jun Yu, and You Ping Gong. "Modeling and Simulation of the PMSM-Precision Reducer System with Modelica." Applied Mechanics and Materials 201-202 (October 2012): 202–7. http://dx.doi.org/10.4028/www.scientific.net/amm.201-202.202.
Повний текст джерелаZhao, Liuwei. "Dynamic Analysis and Chaos Control of Bertrand Triopoly Based on Differentiated Products and Heterogeneous Expectations." Discrete Dynamics in Nature and Society 2020 (July 11, 2020): 1–17. http://dx.doi.org/10.1155/2020/2012680.
Повний текст джерелаHoshu, Ayaz Ahmed, Liuping Wang, Shahzeb Ansari, Abdul Sattar, and Manzoor Hyder Alias Bilal. "System Identification of Heterogeneous Multirotor Unmanned Aerial Vehicle." Drones 6, no. 10 (October 20, 2022): 309. http://dx.doi.org/10.3390/drones6100309.
Повний текст джерелаGabriel, Alice-Agnes, Thomas Ulrich, Mathilde Marchandon, James Biemiller, and John Rekoske. "3D Dynamic Rupture Modeling of the 6 February 2023, Kahramanmaraş, Turkey Mw 7.8 and 7.7 Earthquake Doublet Using Early Observations." Seismic Record 3, no. 4 (October 1, 2023): 342–56. http://dx.doi.org/10.1785/0320230028.
Повний текст джерелаДисертації з теми "Complex and heterogeneous dynamic system"
SANSONE, ALESSANDRO. "Applications of Nonlinear Dynamics and Complex Systems Theory to Finance." Doctoral thesis, La Sapienza, 2007. http://hdl.handle.net/11573/917404.
Повний текст джерелаMark, Christoph [Verfasser], Ben [Akademischer Betreuer] Fabry, Ben [Gutachter] Fabry, Rainer [Gutachter] Böckmann, and Josef [Gutachter] Käs. "Heterogeneous stochastic processes in complex dynamic systems / Christoph Mark ; Gutachter: Ben Fabry, Rainer Böckmann, Josef Käs ; Betreuer: Ben Fabry." Erlangen : Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), 2018. http://d-nb.info/1175206369/34.
Повний текст джерелаCROCIANI, LUCA. "Complex Heterogeneous Crowding Phenomena: Multi-Agent Modeling, Simulation, Empirical Evidences and the Case of Elderly Pedestrians." Doctoral thesis, Università degli Studi di Milano-Bicocca, 2016. http://hdl.handle.net/10281/102390.
Повний текст джерелаFaller, Daniel. "Analysis and dynamic modelling of complex systems." [S.l. : s.n.], 2003. http://www.freidok.uni-freiburg.de/volltexte/777.
Повний текст джерелаVaneman, Warren Kenneth. "Evaluating System Performance in a Complex and Dynamic Environment." Diss., Virginia Tech, 2002. http://hdl.handle.net/10919/30043.
Повний текст джерелаPh. D.
Gupta, Amit. "Model reduction and simulation of complex dynamic systems /." Online version of thesis, 1990. http://hdl.handle.net/1850/11265.
Повний текст джерелаPeterson, Thomas. "Dynamic Allocation for Embedded Heterogeneous Memory : An Empirical Study." Thesis, KTH, Skolan för elektroteknik och datavetenskap (EECS), 2018. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-223904.
Повний текст джерелаInbyggda system existerar allestädes och bidrar till våran livsstandard på flertalet avseenden genom att skapa funktionalitet i större system. För att vara verksamma kräver inbyggda system en välfungerande hård- och mjukvara samt gränssnitt mellan dessa. Dessa tre måste ständigt omarbetas i takt med utvecklingen av nya användbara teknologier för inbyggda system. En förändring dessa system genomgår i nuläget är experimentering med nya minneshanteringstekniker för RAM-minnen då nya icke-flyktiga RAM-minnen utvecklats. Dessa minnen uppvisar ofta asymmetriska läs och skriv fördröjningar vilket motiverar en minnesdesign baserad på flera olika icke-flyktiga RAM. Som en konsekvens av dessa egenskaper och minnesdesigner finns ett behov av att hitta minnesallokeringstekniker som minimerar de fördröjningar som skapas. Detta dokument adresserar problemet med minnesallokering på heterogena minnen genom en empirisk studie. I den första delen av studien studerades allokeringstekniker baserade på en länkad lista, bitmapp och ett kompissystem. Med detta som grund drogs slutsatsen att den länkade listan var överlägsen alternativen. Därefter utarbetades minnesarkitekturer med flera minnesbanker samtidigt som framtagandet av flera strategier för val av minnesbank utfördes. Dessa strategier baserades på storleksbaserade tröskelvärden och nyttjandegrad hos olika minnesbanker. Utvärderingen av dessa strategier resulterade ej i några större slutsatser men visade att olika strategier var olika lämpade för olika beteenden hos applikationer.
Balchanos, Michael Gregory. "A probabilistic technique for the assessment of complex dynamic system resilience." Diss., Georgia Institute of Technology, 2012. http://hdl.handle.net/1853/43730.
Повний текст джерелаMeslmawy, Mahdi Abed Salman. "Efficient ressources management in a ditributed computer system, modeled as a dynamic complex system." Thesis, Le Havre, 2015. http://www.theses.fr/2015LEHA0007/document.
Повний текст джерелаGrids and clouds are types of currently widely known distributed computing systems or DCSs. DCSs are complex systems in the sense that their emergent global behavior results from decentralized interaction of its parts and is not guided directly from a central point. In our study, we present a complex system model that efficiently manages the ressources of a DCS. The entities of the DCS react to system instability and adjust their environmental condtions for optimizing system performance. The structure of the interaction networks that allow fast and reliable access to available resources is studied and improvements ar proposed
Moukir, Sara. "High performance analysis for road traffic control." Electronic Thesis or Diss., université Paris-Saclay, 2024. http://www.theses.fr/2024UPASG039.
Повний текст джерелаThe need to reduce travel times and energy consumption in urban road networks is critical for improving collective well-being and environmental sustainability. Since the 1950s, traffic modeling has been a central research focus. With the rapid evolution of computing capabilities in the 21st century, sophisticated digital simulations have emerged, accurately depicting road traffic complexities. Mobility simulations are essential for assessing emerging technologies like cooperative systems and dynamic GPS navigation without disrupting real traffic.As transport systems become more complex with real-time information, simulation models must adapt. Multi-agent simulations, which analyze individual behaviors within a dynamic environment, are particularly suited for this task. These simulations help understand and manage urban traffic by representing interactions between travelers and their environment.Simulating large populations of travelers in cities, potentially millions of individuals, has historically been computationally demanding. Advanced computer technologies allowing distributed calculations across multiple computers have opened new possibilities. However, many urban mobility simulators do not fully exploit these distributed architectures, limiting their ability to model complex scenarios involving many travelers and extensive networks.The main objective of this research is to improve the algorithmic and computational performance of mobility simulators. We aim to develop and validate generic and reproducible distribution models that can be adopted by various multi-agent mobility simulators. This approach seeks to overcome technical barriers and provide a solid foundation for analyzing complex transport systems in dynamic urban environments.Our research leverages the MATSim traffic simulator due to its flexibility and open structure. MATSim is widely recognized in the literature for multi-agent traffic simulation, making it an ideal candidate to test our generic methods.Our first contribution applies the "Unite and Conquer" (UC) approach to MATSim. This method accelerates simulation speed by leveraging modern computing architectures. The multiMATSim approach involves replicating several MATSim instances across multiple computing nodes with periodic communications. Each instance runs on a separate node, utilizing MATSim's native multithreading capabilities to enhance parallelism. Periodic synchronization ensures data consistency, while fault tolerance mechanisms allow the simulation to continue smoothly even if some instances fail. This approach efficiently uses diverse computational resources based on each node's specific capabilities.The second contribution explores artificial intelligence techniques to expedite the simulation process. Specifically, we use deep neural networks to predict MATSim simulation outcomes. Initially implemented on a single node, this proof-of-concept approach efficiently uses available CPU resources. Neural networks are trained on data from previous simulations to predict key metrics like travel times and congestion levels. The outputs are compared to MATSim results to assess accuracy. This approach is designed to scale, with future plans for distributed neural network training across multiple nodes.In summary, our contributions provide new algorithmic variants and explore integrating high-performance computing and AI into multi-agent traffic simulators. We aim to demonstrate the impact of these models and technologies on traffic simulation, addressing the challenges and limitations of their implementation. Our work highlights the benefits of emerging architectures and new algorithmic concepts for enhancing the robustness and performance of traffic simulators, presenting promising results
Книги з теми "Complex and heterogeneous dynamic system"
Voros, Nikolaos S., Alberto Rosti, and Michael Hübner, eds. Dynamic System Reconfiguration in Heterogeneous Platforms. Dordrecht: Springer Netherlands, 2009. http://dx.doi.org/10.1007/978-90-481-2427-5.
Повний текст джерелаVittorio, D'Amato, and Maccheroni Carlo 1942-, eds. Dynamic analysis of complex systems. Milano, Italy: FrancoAngeli, 1990.
Знайти повний текст джерелаAlbers, Michael J. Communication of complex information: User goals and information needs for dynamic Web information. Mahwah, N.J: Lawrence Erlbaum Associates Pub., 2005.
Знайти повний текст джерелаPeter, Entel, and Wolf Dietrich E, eds. International Symposium on Structure and Dynamics of Heterogeneous Systems: From atoms, molecules and clusters in complex environment to thin films and multilayers : Duisburg, Germany, 24-26 February 1999. Singapore: World Scientific, 2000.
Знайти повний текст джерелаLazareva, Marina. Dynamic stability of holdings. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1154382.
Повний текст джерелаTarakanov, Andrey, A. Sumin, and A. Hvostov. Mathematical problems of decision-making in dynamic organizational systems. ru: INFRA-M Academic Publishing LLC., 2023. http://dx.doi.org/10.12737/1871445.
Повний текст джерелаBerihanova, Rumisa, and Inessa Minenko. Complex non-drug correction of menopausal disorders in patients with metabolic syndrome. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1599004.
Повний текст джерелаBabina, Ol'ga. Theory, methodology and practice of regional strategic planning. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1738755.
Повний текст джерелаGruzdev, Vladimir, Sergey Suslov, Vladimir Kosinskiy, and Mariya Hrustaleva. Changes in the composition and structure of the components of the landscapes of the forest zone in the conditions of technogenesis. ru: INFRA-M Academic Publishing LLC., 2023. http://dx.doi.org/10.12737/1850657.
Повний текст джерелаIsmailov, Nariman, Samira Nadzhafova, and Aygyun Gasymova. Bioecosystem complexes for the solution of environmental, industrial and social problems (on the example of Azerbaijan). ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1043239.
Повний текст джерелаЧастини книг з теми "Complex and heterogeneous dynamic system"
Mimkes, J., M. Hillebrand, F. Fründ, Ch Denk, and G. Willis. "Interactions of Heterogeneous Agents in Stochastic Socio-economic Systems." In The Complex Dynamics of Economic Interaction, 379–93. Berlin, Heidelberg: Springer Berlin Heidelberg, 2004. http://dx.doi.org/10.1007/978-3-642-17045-4_22.
Повний текст джерелаThoma, Florian, and Jürgen Becker. "Control of Dynamic Reconfiguration." In Dynamic System Reconfiguration in Heterogeneous Platforms, 129–37. Dordrecht: Springer Netherlands, 2009. http://dx.doi.org/10.1007/978-90-481-2427-5_11.
Повний текст джерелаBader, Sebastian. "Agentification of Objects in Heterogeneous Dynamic Environments." In Multiagent System Technologies, 157–64. Berlin, Heidelberg: Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-24603-6_16.
Повний текст джерелаMeng, Lei, Tijana Milenković, and Aaron Striegel. "Systematic Dynamic and Heterogeneous Analysis of Rich Social Network Data." In Complex Networks V, 25–37. Cham: Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-05401-8_3.
Повний текст джерелаCensi, Federica, Giovanni Calcagnini, and Sergio Cerutti. "Dynamic Coupling Between Respiratory and Cardiovascular System." In Understanding Complex Systems, 195–212. Cham: Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-07155-8_6.
Повний текст джерелаBonnot, Philippe, Alberto Rosti, Fabio Campi, Wolfram Putzke-Röming, Nikolaos S. Voros, Michael Hübner, and Hélène Gros. "Introduction." In Dynamic System Reconfiguration in Heterogeneous Platforms, 3–11. Dordrecht: Springer Netherlands, 2009. http://dx.doi.org/10.1007/978-90-481-2427-5_1.
Повний текст джерелаBertels, Koen, Marcel Beemster, Vlad-Mihai Sima, Elena Moscu Panainte, and Marius Schoorel. "The Molen Organisation and Programming Paradigm." In Dynamic System Reconfiguration in Heterogeneous Platforms, 119–27. Dordrecht: Springer Netherlands, 2009. http://dx.doi.org/10.1007/978-90-481-2427-5_10.
Повний текст джерелаGrasset, Arnaud, Richard Taylor, Graham Stephen, Joachim Knäblein, and Axel Schneider. "Specification Tools for Spatial Design." In Dynamic System Reconfiguration in Heterogeneous Platforms, 139–64. Dordrecht: Springer Netherlands, 2009. http://dx.doi.org/10.1007/978-90-481-2427-5_12.
Повний текст джерелаLagadec, Loic, Damien Picard, and Bernard Pottier. "Spatial Design." In Dynamic System Reconfiguration in Heterogeneous Platforms, 165–82. Dordrecht: Springer Netherlands, 2009. http://dx.doi.org/10.1007/978-90-481-2427-5_13.
Повний текст джерелаSahlbach, Henning, Wolfram Putzke-Röming, Sean Whitty, and Rolf Ernst. "Real-Time Digital Film Processing." In Dynamic System Reconfiguration in Heterogeneous Platforms, 185–93. Dordrecht: Springer Netherlands, 2009. http://dx.doi.org/10.1007/978-90-481-2427-5_14.
Повний текст джерелаТези доповідей конференцій з теми "Complex and heterogeneous dynamic system"
Pasternak, Viktoriya, Artem Ruban, Yurii Horbachenko, and Sergii Vavreniuk. "Computer Modelling of the Process of Separation of Heterogeneous Elements (Spheres)." In International Scientific Applied Conference "Problems of Emergency Situations", 127–36. Switzerland: Trans Tech Publications Ltd, 2024. http://dx.doi.org/10.4028/p-5aamef.
Повний текст джерелаLiang, Wenliang, Hao Lin, Haihua Shen, and Enbo Wang. "Orchestrating and Scheduling System for Workflows in Heterogeneous and Dynamic Environment." In IEEE INFOCOM 2024 - IEEE Conference on Computer Communications Workshops (INFOCOM WKSHPS), 1–6. IEEE, 2024. http://dx.doi.org/10.1109/infocomwkshps61880.2024.10620801.
Повний текст джерелаBogdanski, Marcin, Peter R. Lewis, Tobias Becker, and Xin Yao. "Improving Scheduling Techniques in Heterogeneous Systems with Dynamic, On-Line Optimisations." In 2011 International Conference on Complex, Intelligent and Software Intensive Systems (CISIS). IEEE, 2011. http://dx.doi.org/10.1109/cisis.2011.81.
Повний текст джерелаCheptsov, Alexey. "Dynamic Approach to Scheduling Reconfigurable Scientific Workflows in Heterogeneous HPC Environments." In 2016 10th International Conference on Complex, Intelligent, and Software Intensive Systems (CISIS). IEEE, 2016. http://dx.doi.org/10.1109/cisis.2016.146.
Повний текст джерелаGastelum-Juarez, Daniel, Rosa Martha López-Gutiérrez, Adrian Arellano-Delgado, and César Cruz-Hernández. "Outer Synchronization and Formation of Two Complex Heterogeneous Robotic Networks with an Intermediary Dynamic System." In 2023 XXV Robotics Mexican Congress (COMRob). IEEE, 2023. http://dx.doi.org/10.1109/comrob60035.2023.10349740.
Повний текст джерелаPritchett, Amy R., H. Claus Christmann, and Matthew S. Bigelow. "A simulation engine to predict multi-agent work in complex, dynamic, heterogeneous systems." In 2011 IEEE International Multi-Disciplinary Conference on Cognitive Methods in Situation Awareness and Decision Support (CogSIMA 2011). IEEE, 2011. http://dx.doi.org/10.1109/cogsima.2011.5753432.
Повний текст джерелаOparin, Gennady, Alexander Feoktistov, Vera Bogdanova, and Ivan Sidorov. "Automation of multi-agent control for complex dynamic systems in heterogeneous computational network." In ICNPAA 2016 WORLD CONGRESS: 11th International Conference on Mathematical Problems in Engineering, Aerospace and Sciences. Author(s), 2017. http://dx.doi.org/10.1063/1.4972709.
Повний текст джерелаAndreev, A. Yu, A. V. Terentyev, R. O. Sudorgin, V. V. Filatov, and V. S. Ershov. "Development of a Heterogeneous Dynamic Transport System Based on the Bellman Function to Optimize the Process of Planning Automobile Routes." In 2023 Intelligent Technologies and Electronic Devices in Vehicle and Road Transport Complex (TIRVED). IEEE, 2023. http://dx.doi.org/10.1109/tirved58506.2023.10332680.
Повний текст джерелаReid, Christopher J., Biswanath Samanta, and Christopher Kadlec. "Development of a Network Infrastructure for Heterogeneous Robot and Control Systems Interactions." In ASME 2015 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2015. http://dx.doi.org/10.1115/imece2015-52464.
Повний текст джерелаManzano, Wallace, Valdemar Vicente Graciano Neto, and Elisa Yumi Nakagawa. "Simulation of Systems-of-Systems Dynamic Architectures." In XI Congresso Brasileiro de Software: Teoria e Prática. Sociedade Brasileira de Computação - SBC, 2020. http://dx.doi.org/10.5753/cbsoft_estendido.2020.14632.
Повний текст джерелаЗвіти організацій з теми "Complex and heterogeneous dynamic system"
Perdigão, Rui A. P. Earth System Dynamic Intelligence - ESDI. Meteoceanics, April 2021. http://dx.doi.org/10.46337/esdi.210414.
Повний текст джерелаPerdigão, Rui A. P., Julia Hall, and Kaya Schwemmlein. Polyadic Dynamic Nexus among Complex Socio-Environmental Systems: from Earth System Dynamics to Sustainable Development. Meteoceanics, August 2020. http://dx.doi.org/10.46337/200819.
Повний текст джерелаPerdigão, Rui A. P. Earth System Dynamic Intelligence with Quantum Technologies: Seeing the “Invisible”, Predicting the “Unpredictable” in a Critically Changing World. Meteoceanics, October 2021. http://dx.doi.org/10.46337/211028.
Повний текст джерелаPerdigão, Rui A. P., and Julia Hall. Spatiotemporal Causality and Predictability Beyond Recurrence Collapse in Complex Coevolutionary Systems. Meteoceanics, November 2020. http://dx.doi.org/10.46337/201111.
Повний текст джерелаMorkun, Vladimir S., Natalia V. Morkun, and Andrey V. Pikilnyak. Augmented reality as a tool for visualization of ultrasound propagation in heterogeneous media based on the k-space method. [б. в.], February 2020. http://dx.doi.org/10.31812/123456789/3757.
Повний текст джерелаNechaev, V., Володимир Миколайович Соловйов, and A. Nagibas. Complex economic systems structural organization modelling. Politecnico di Torino, 2006. http://dx.doi.org/10.31812/0564/1118.
Повний текст джерелаPatel, Reena. Complex network analysis for early detection of failure mechanisms in resilient bio-structures. Engineer Research and Development Center (U.S.), June 2021. http://dx.doi.org/10.21079/11681/41042.
Повний текст джерелаPerdigão, Rui A. P. New Horizons of Predictability in Complex Dynamical Systems: From Fundamental Physics to Climate and Society. Meteoceanics, October 2021. http://dx.doi.org/10.46337/211021.
Повний текст джерелаZanoni, Wladimir, Emily Díaz, Jorge Paredes, Leandro Gaston Andrian, and Juan Lorenzo Maldonado. Emerging Markets Bond Index Performance and Sovereign Default: The Case of Ecuador. Inter-American Development Bank, March 2024. http://dx.doi.org/10.18235/0005676.
Повний текст джерелаLekhanya, Portia Keabetswe, and Kabelo Mokgalaboni. Exploring the effectiveness of vitamin B12 complex and alpha-lipoic acid as a treatment for diabetic neuropathy. Protocol for systematic review. INPLASY - International Platform of Registered Systematic Review and Meta-analysis Protocols, May 2022. http://dx.doi.org/10.37766/inplasy2022.5.0167.
Повний текст джерела