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1

Lin, C. Y., und R. R. Levary. „Computer-aided software development process design“. IEEE Transactions on Software Engineering 15, Nr. 9 (1989): 1025–37. http://dx.doi.org/10.1109/32.31362.

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2

Han, Su, und Xin Dai Zhang. „Research of the Computer-Aided-Translation Software“. Advanced Materials Research 989-994 (Juli 2014): 4637–42. http://dx.doi.org/10.4028/www.scientific.net/amr.989-994.4637.

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In recent years, with the rapid development of computers, computer-aided-translation software has been used more often, which can improve the efficiency and quality of translation. This paper analyzes the characteristics of the four commonly used computer-aided-translation software at home and abroad--SDL Trados, Déjà Vu, Wordfast and Yaxin in satisfying different users’ needs, points out their characteristics and provides reference for those who are interested in computer-aided-translation technology.
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3

Anderson, Max D., Steven A. Hauk, Robert Laramore und Hardy J. Pottinger. „Computer-Aided Testing of Electrical Machines: Software Development“. IEEE Power Engineering Review PER-7, Nr. 8 (August 1987): 60. http://dx.doi.org/10.1109/mper.1987.5527077.

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4

Anderson, Max D., Steven A. Hauk, Robert Laramore und Hardy J. Pottinger. „Computer-Aided Testing of Electrical Machines: Software Development“. IEEE Transactions on Power Systems 2, Nr. 3 (1987): 824–30. http://dx.doi.org/10.1109/tpwrs.1987.4335215.

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5

KANO, Atsushi, und Nanami NAGATANI. „Development of Computer Aided Instruction Software for Agricultural Studies.“ Journal of Agricultural Meteorology 49, Nr. 1 (1993): 35–39. http://dx.doi.org/10.2480/agrmet.49.35.

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6

McNamara, B., und K. J. M. Moriarty. „Computer-Aided Software Development Tools for the Supercomputer Environment“. International Journal of Supercomputing Applications 4, Nr. 4 (Dezember 1990): 56–70. http://dx.doi.org/10.1177/109434209000400405.

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7

Kim, Sungmin. „Development of a computer-aided design software for smart garments“. International Journal of Clothing Science and Technology 29, Nr. 6 (06.11.2017): 845–56. http://dx.doi.org/10.1108/ijcst-02-2017-0011.

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Purpose The purpose of this paper is to develop a computer-aided design software for smart garments. Design/methodology/approach A circuit design software with graphical user interface and an automatic Arduino code generator has been developed. Findings Complex circuit design for smart garment can be performed using an intuitive graphical user interface. Sophisticated C codes for activating the smart garment can be generated without in-depth knowledge of C language and electronic devices. Research limitations/implications Circuit wiring is performed manually. Further work will be focused on the generation of an algorithm that can find the overlap-free design of complex circuit. Practical implications Smart garments with complex functions are expected to be designed more easily without in-depth knowledge of electronic circuits and computer programming. Social implications Researchers of smart garment will be able to concentrate on the actual function of smart garments rather than coding the complex C programs. Originality/value This is the first computer-aided smart garment design software that can not only design the circuit but also generate the computer codes.
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Cai, Hongtao, Yanhong Wang und Yusheng Li. „Research and Development Based on Interactive Computer Aided Instruction Software“. IERI Procedia 2 (2012): 420–24. http://dx.doi.org/10.1016/j.ieri.2012.06.110.

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9

JOSHI, SANJAY B., ERIK G. METTALA und RICHARD A. WYSK. „CIMGEN—A COMPUTER AIDED SOFTWARE ENGINEERING TOOL FOR DEVELOPMENT OF FMS CONTROL SOFTWARE“. IIE Transactions 24, Nr. 3 (Juli 1992): 84–97. http://dx.doi.org/10.1080/07408179208964226.

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10

Benz, Robert J., und Michael A. Ogden. „Development and Benefits of Computer-Aided Travel Time Data Collection“. Transportation Research Record: Journal of the Transportation Research Board 1551, Nr. 1 (Januar 1996): 1–7. http://dx.doi.org/10.1177/0361198196155100101.

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Link travel times are one of the most widely used and valuable measurements of congestion. Travel time measures are compatible with multimodal analyses and are understood by nontechnical audiences, yet are rigorous enough for technical analyses by transportation engineers and planners. The “average” car and floating car techniques are the most widely used travel time–based measures. Although there are cost, safety, and data limitation problems associated with collecting travel time data manually, the use of computer-aided travel time technology solves most of these problems. Detailed speed, time, and distance information can be safely collected in up to 0.1-sec intervals for a reasonable cost. The consistent format of the computer data lends itself to an automated analysis process. The development and benefits of using computer-aided travel time data collection techniques using distance-measuring instruments (DMI) and laptop computers are discussed. Automated analysis techniques and developmental software can produce results such as speed profiles, average speeds, level of service, and vehicle accelerations. Current and future research on air quality methods, fuel consumption information, and planning model potential is also presented.
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Kang, Xiao Yun. „On the Comparison and Design of Computer-Aided Translation Software“. Advanced Materials Research 1044-1045 (Oktober 2014): 1214–17. http://dx.doi.org/10.4028/www.scientific.net/amr.1044-1045.1214.

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With the development of computer technology, computer-aided translation software is widely applied to translation. It is able to improve translation efficiency and quality. Meanwhile, it is in accordance with the requirement of market-oriented translation workshop. The paper compares the strengths and weaknesses of the major computer-aided translation software, which provides the software consumers with practical suggestion. The design principle is also discussed in the paper to facilitate the design of satisfactory computer-aided translation software to the users.
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Sokolov, A. P., V. M. Makarenkov, A. Yu Pershin und I. A. Laishevskiy. „Development of Template-Based Code Generation Software for Development of Computer-Aided Engineering System“. PROGRAMMNAYA INGENERIA 10, Nr. 9-10 (14.10.2019): 400–416. http://dx.doi.org/10.17587/prin.10.400-416.

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13

Yang, Guiqi. „The development and application of computer aided software in college physical education“. IOP Conference Series: Materials Science and Engineering 569 (09.08.2019): 052071. http://dx.doi.org/10.1088/1757-899x/569/5/052071.

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14

Liu, Guoyuan, Zhi Li, Shilang Huang, Zhaofeng Ouyang und Zhe Liu. „CARE: A Computer-Aided Requirements Engineering Tool for Problem-Oriented Software Development“. International Journal of Software Engineering and Knowledge Engineering 25, Nr. 09n10 (November 2015): 1747–52. http://dx.doi.org/10.1142/s0218194015710114.

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This paper presents a set of computer-aided tools for problem analysis in the software development process. Jackson’s problem diagrams are used to model the problem owners’ needs and relevant contexts for the software to be built. An algorithm based on three classes of rules is provided for the systematic transformation of these models into behavioral descriptions of the software. This work is part of our long-term research efforts aiming at embedding and empirically evaluating Jackson’s Problem Frames framework (PF) in requirements engineering practice.
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Abeywardena, Ishan Sudeera, und Ho Sinn Chye. „Development of a Computer-Aided ODL Course Development Tracking System (CDTS)“. Asian Association of Open Universities Journal 6, Nr. 1 (01.09.2011): 43–50. http://dx.doi.org/10.1108/aaouj-06-01-2011-b005.

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Constant emphasis and close attention paid to Quality Assurance in the production of Open Distance Learning (ODL) course materials at Wawasan Open University (WOU) had necessitated that the whole process of course materials development be clearly defined and tracked systematically. Although a Standard Operating Procedure already exists, yet its implementation by way of manual tracking could not always guarantee that the work delivery timelines are diligently tracked and crucial inputs from all key stakeholders in the course development team are received in a timely manner. There was also a need to ensure that Schools and their academics (course coordinators), the Registry, Educational Technology and Publishing Unit, IT Services and Learning and Library Services could track the developmental stages of any named course at any specific time. A new software application had been developed in-house at WOU which enables all the key stakeholders to keep track of all stages of the course development chain from start to end. The application, built on the Microsoft .NET framework using a centralized MS SQL Server database, serves as a central repository of all the information relevant to the course development cycle and manages the archiving of all the documents. The application can generate (i) course development status reports for ongoing development, (ii) the complete course development report for the courses which have been completed and (iii) summary reports of the progress of any on-going or completed course development for management purposes by the Deans and Directors of the relevant academic support units. A pilot study was conducted involving participation of a small group of selected key stakeholders. It provided valuable feedback which had helped the software development team to further fine-tune the application before the system gets deployed in July 2010. This paper describes the development process and the workings of the Course Development Tracking System (CDTS). It discusses the implications of implementing the system in a real-world environment
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Kun, Li Hai, Cheng Feng und Liu Yan Li. „Development of Red Laser Positioning Computer-Aided-Signage System“. Advanced Materials Research 179-180 (Januar 2011): 13–19. http://dx.doi.org/10.4028/www.scientific.net/amr.179-180.13.

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This paper introduces the development of red laser positioning computer-aided-signage system. This series of laser cutting machines have red laser auxiliary positioning system, powerful cutting system, the workbench powerful software support, the use of simple, convenient and low cost, complete with diverse demand of cutting, according to relevant literatures, this kind of technology and products to domestic initiative. This product adopts mechanic-electrical comprehensive technology, can achieve the design rules for the high speed and high precision positioning for advertising and cutting, printing industry to design a digital contour cutting provides solutions, changed the traditional manual shear mode, improve the production efficiency.
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Hinchliffe, S. J., M. A. Crang, S. M. Reimer und A. C. Hudson. „Software for Qualitative Research: 2. Some Thoughts on ‘Aiding’ Analysis“. Environment and Planning A: Economy and Space 29, Nr. 6 (Juni 1997): 1109–24. http://dx.doi.org/10.1068/a291109.

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In this paper we reject accounts which portray computer aided qualitative data analysis software (CAQDAS) as neutral and benign. We argue that applying computer software to qualitative projects raises a number of important issues that go to the heart of ethnography. Although we initially work with a distinction between tactile and digital ethnographics, the issues that we raise are not unique to computer-aided analyses. Indeed, we argue that the adoption of computers marks a useful moment in which to think critically about the means and ends of qualitative analysis. In this paper we urge qualitative researchers to avoid both an outright rejection and an unquestioning adoption of computer software packages. Rather, we work towards a ‘crafty’ approach to ethnography where computers are incorporated into the body of research in a critically reflexive and creative manner. We end the paper with some thoughts on the potential of such incorporation.
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Ramadhan, Ali, Tunjung Atmadi und Rizki Dinata. „Utilization of Computer Aided Design Software as a Visual Simulation“. International Humanities and Applied Science Journal 2, Nr. 3 (04.10.2019): 1. http://dx.doi.org/10.22441/ihasj.2019.v2i3.01.

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Software is known as one of the components found on a computer. As a software, computer-aided design can be used as a tool to realize ideas. In the process, to be able to realize the idea, it is necessary to have a visual simulation as an aid to be able to see conditions that are able to represent the results of the ideas made. By using qualitative descriptive methods. this research will be useful to be able to provide information to users of computer-aided design software as a basis for using software to produce visual simulations Computer-aided design software in its development can help users to be able to see the condition of a design in a form that represents the original shape. and also can minimize the use of real prototypes to deliver design results. Keywords: Devices, Software, computer-aided design, Simulation, Visual.
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Hoffmann, Christoph M. „Constraint-Based Computer-Aided Design“. Journal of Computing and Information Science in Engineering 5, Nr. 3 (15.05.2005): 182–87. http://dx.doi.org/10.1115/1.1979508.

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Computer-aided design (CAD) systems have become parametric, basing shape design on constraints and design feature operations. We review the development of constraint-based parametric CAD, explaining some of the foundational issues as well as giving an outlook on possible future directions of development.
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Pfeifer, Marcel Rolf. „Computer-Aided Standardisation for Manufacturing and Maintenance Activities“. Technological Engineering 16, Nr. 1 (01.10.2019): 22–24. http://dx.doi.org/10.1515/teen-2019-0004.

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Abstract The paper deals with the development and application of computer-aided standardisation (CAS) for the distribution of standardisation data of production and maintenance processes within the company network. Rising integration pressure of company software tools also include CAx technologies. These CAx technologies provide software solutions for different applications, being able to work closely together with ERP-systems, Business Intelligence (BI) tools and further systems. The possibility of integration makes it also feasible to look on the CAS tool and its potential. While CAS is a topic not yet fully discussed, future development may lead to the requirement of integrating the CAS with the ERP and planning system. Approaches, such as CIM, digital factories (DF) and Industry 4.0 benefit from a broader database available with the CAS system employed
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Sun, Wei, und Pallavi Lal. „Recent development on computer aided tissue engineering — a review“. Computer Methods and Programs in Biomedicine 67, Nr. 2 (Februar 2002): 85–103. http://dx.doi.org/10.1016/s0169-2607(01)00116-x.

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22

Li, Si Hui. „Interior Design Function of Computer-Aided Systems“. Applied Mechanics and Materials 716-717 (Dezember 2014): 557–61. http://dx.doi.org/10.4028/www.scientific.net/amm.716-717.557.

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China Academy of Building Research developed CASD software is a set of current Chinese interior decoration works more advanced computer-aided systems. The charge in the development of software design process has been integrated with the design, the overall process architecture is very reasonable, with a clear overall advantage. Various functional modules specific division CASD system also worked closely, and also give full consideration to the reality of decorative construction collision problems. The built-in modeling means rich and practical introduction "decorative base," an important technical means to grasp the construction more convenient interface. All this fully shows that a system design is quite intelligent, humane, is a computer-aided system is ideal for interior design, it is worth promoting the use of interior design.
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Henderson, Peter B. „A Computer-Aided Instructional Environment“. Journal of Educational Technology Systems 15, Nr. 3 (März 1987): 281–301. http://dx.doi.org/10.2190/0lav-lk3n-kypm-7qy7.

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A computer-aided instructional environment which is based primarily upon the direct manipulation paradigm to promote learning by doing, or discovery learning is described. This environment has been implemented and used in an introductory computer science course to teach algorithmic problem-solving. It has been developed as a modular software system which is easily adapted for a wide range of instructional activities and student populations. It provides a simple, adaptable, and conceptually uniform approach to the development of a class of practical CAI systems. Several important characteristics of this computer-aided instructional environment include guiding students toward understanding a concept without being too obtrusive, introducing example tasks and subtasks so students can discover concepts on their own by generalizing from examples, providing meaningful graphical and/or verbal feedback to students, recognizing and gently correcting misconceptions, and knowing when to terminate a tutoring session.
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Corbo, Anthony, und Brian H. Kleiner. „New Developments in Computer‐aided Manufacturing“. Integrated Manufacturing Systems 2, Nr. 1 (Januar 1991): 13–15. http://dx.doi.org/10.1108/09576069110004633.

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25

Im, Yong-Tai, und Daniel F. Walczyk. „Development of a Computer-Aided Manufacturing System for Profiled Edge Lamination Tooling“. Journal of Manufacturing Science and Engineering 124, Nr. 3 (11.07.2002): 754–61. http://dx.doi.org/10.1115/1.1467077.

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Profiled Edge Lamination (PEL) tooling is a promising Rapid Tooling (RT) method involving the assembly of an array of laminations whose top edges are simultaneously profiled and beveled based on a CAD model of the intended tool surface. To facilitate adoption of this RT method by industry, a comprehensive PEL Tooling Development System has been proposed. The two main parts of this system are (1) iterative tool design based on thermal and structural models and (2) fabrication of the tool using a Computer-aided Manufacturing (CAM) software and Abrasive Water Jet (AWJ) cutting. CAM software has been developed to take lamination slice data (profiles) from any proprietary RP software in the form of polylines and create smooth, kinematically desirable cutting trajectories for each tool lamination. Two cutting trajectory algorithms, called Identical Equidistant Profile Segmentation (IEPS) and Adaptively Vectored Profiles Projection (AVPP), were created for this purpose. By comparing the performance of both algorithms with a benchmark part shape, the AVPP algorithm provided better cutting trajectories for complicated tool geometries. A 15-layer aluminum PEL tool was successfully fabricated using a 5-axis CNC AWJ cutter and NC code generated by the CAM software.
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Yezhova, Olga V., Kalina L. Pashkevich und Denys V. Gryn. „DEVELOPMENT OF TECHNOLOGY EDUCATION STUDENTS’ ICT COMPETENCE WHILE TEACHING COMPUTER-AIDED FASHION DESIGN“. Information Technologies and Learning Tools 73, Nr. 5 (22.10.2019): 15–27. http://dx.doi.org/10.33407/itlt.v73i5.2547.

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The present paper deals with the problem of CAD (computer-aided design) competence formation of would-be teachers of technology and vocational school teachers. It is noted that for fashion industry to develop, it is necessary that its professionals should have both the knowledge of basic communication technologies and foundations of using CAD. ICT competence is necessary for trainee teachers of technology and vocational education specialists both for their educational activity and for successful creation of outfit models using computer techniques. The aim of the research lies in grounding the list of software equipment to be used by trainee teachers of technology and vocational school teachers to provide effective learning of CAD in professional sphere. The introduction to professional-oriented software is realized in higher education institutions of Ukraine during the course of “Basics of computer aided design”, after a preparatory course “Information Technologies” Information technologies are used in fashion industry for creating new models, equipment management, and for maintaining the life cycle of outfits. Hereby presented is a systemized list of computer software tools for professional purposes to be used in automated workstation of the designer: software tools for correct and safe system component management; software for file creation and information sharing; CAD-subsystems. The content of the course “Basics of computer aided design” have been described. Practical approbation has proved effectiveness of the developed syllabus along with the methodological support of the course “Basics of computer-aided design”. The results of the investigation are important for grounding the content of study for trainee teachers of technology and specialists of vocational education, as well as for professionals in fashion industry.
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Ma, Lan. „Computer-Aided Design (CAD) and Environmental Art Design“. Advanced Materials Research 320 (August 2011): 244–48. http://dx.doi.org/10.4028/www.scientific.net/amr.320.244.

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Computer-aided design (CAD) poses a brand new change of environmental art design from concept to skills. Nowadays, computer operation is a must for environmental art design, and no one can ignore such a powerful trend. This is transition period from traditional manual design mode to advanced computer design mode, and now we are standing on top of this new start point. CAD has fully performed its charm and become an indispensable tool in the field of the environmental creative art design. Mastering relevant software has become an essential skill for designers. However they often feel lost in current complex computer software, or even when they have conquered software technology difficulties, still trapped into a hard-pressed embarrassment to combine design with ideas. This dissertation starts from CAD definition, discusses CAD development and its own characteristics, and further on CAD applications in environment art design, main types and functions in current CAD software. The end of this article also gives an outlook on future effects and scheme a better vision for CAD in environmental design.
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Hinsen, Konrad. „Platforms for publishing and archiving computer-aided research“. F1000Research 3 (24.11.2014): 289. http://dx.doi.org/10.12688/f1000research.5773.1.

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Computational models and methods take an ever more important place in modern scientific research. At the same time, they are becoming ever more complex, to the point that many such models and methods can no longer be adequately described in the narrative of a traditional journal article. Often they exist only as part of scientific software tools, which causes two important problems: (1) software tools are much more complex than the models and methods they embed, making the latter unnecessarily difficult to understand, (2) software tools depend on minute details of the computing environment they were written for, making them difficult to deploy and often completely unusable after a few years. This article addresses the second problem, based on the experience gained from the development and use of a platform specifically designed to facilitate the integration of computational methods into the scientific record.
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Li, Yu He, Peng Xu und Xin Li Bai. „Computer Aided Design Based on Visual FORTRAN and AutoCAD“. Advanced Materials Research 628 (Dezember 2012): 245–48. http://dx.doi.org/10.4028/www.scientific.net/amr.628.245.

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Aimed at disadvantages of tedious work of the gear teeth design, Visual Fortran is taken as the development platform, and design data are stored and managed by self-developed program and database technology. A CAD System for Gear Teeth named GTCS is researched and developed. The system integrates designing and drawing in a body, and fully uses the powerful numerical calculation function of Visual Fortran and the function of Windows interface design, as well as the secondary development function of AutoCAD and database technology, etc. The software can realize designing and calculating of involute gear teeth and transmission mechanism, automatic drawing and various kinds of results post-processing. Results show that the research results greatly improved the efficiency and quality of the design. The result documents are easily accessible by other structural analysis software (such as SolidWorks, ANSYS, ADINA, etc) and similar design software, and convenient to use for the follow-up work.
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Dahlstedt, Palle, und Peter McBurney. „Musical Agents: Toward Computer-Aided Music Composition Using Autonomous Software Agents“. Leonardo 39, Nr. 5 (Oktober 2006): 469–70. http://dx.doi.org/10.1162/leon.2006.39.5.469.

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The authors, a composer and a computer scientist, discuss their collaborative research on the use of multiagent systems and their applicability to music and musical composition. They describe the development of software and techniques for the composition of generative music.
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Kuo, Po Yen, Yu Chan Chao und Wen Sheng Ou. „Software Development for Taiwan Building Envelope Load“. Applied Mechanics and Materials 71-78 (Juli 2011): 4057–60. http://dx.doi.org/10.4028/www.scientific.net/amm.71-78.4057.

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Taiwan’s building laws are very rigorous for envelope load of various buildings, and building envelope load should be calculated according to the Technical Code for Energy Conservation Design of Buildings. The complex calculation may undermine cooperative initiative of the industry. If computer aid can be used, the time for calculation and laws search can be save. To provide practical computer-aided calculation tool of envelope load for builders and academic departments, this study designed a computer-aided software BEEP-2010 which can quickly calculate whether the designed building meets the regulations. Java is used to write programs for this software. The database system applies the Relational Database. ER-model is used to normalize the database design. The user interface design adopts graphics mode to simplify operation interface. As long as the user understands basic concept of the envelope load, he/she only needs statistics of the area data and print the calculation result in the form of standard window to reduce the inconvenience in table search. Thus, this can greatly improve calculation efficiency of envelope load of Taiwan building businesses and help promote green buildings.
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Wang, Zhu, und Miao Miao Liu. „The Control System for Metal Forming Based on Computer Aided Design“. Applied Mechanics and Materials 536-537 (April 2014): 1207–10. http://dx.doi.org/10.4028/www.scientific.net/amm.536-537.1207.

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This paper presents the design of control system of direct metal deposition forming software. The system which is designed by VC++ software employs the ideas of object-oriented and data stream. The metal parts are abstracted into objects and classes to realize the reusability and scalability. The software control system has realized from the machine initialization, digital control code generation, forming process control, process parameter management module. The control system can improve the forming quality and achieve the best forming process control, saving the metal parts of the development time and cost of development.
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Sokolov, A. P., und A. Yu Pershin. „Software Tools for Development of Input Data Subsystems of Computer-Aided Engineering Complexes“. PROGRAMMNAYA INGENERIA 8, Nr. 12 (18.12.2017): 543–55. http://dx.doi.org/10.17587/prin.8.543-555.

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Vielcanet, P. „Influence of advanced computer-aided design techniques on space mission analysis software development“. Computer Physics Communications 49, Nr. 1 (April 1988): 235–42. http://dx.doi.org/10.1016/0010-4655(88)90231-7.

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Chang, Chi-Ming, Hsu-Sung Kuo, Shu-Hui Chang, Hong-Jen Chang, Der-Ming Liou, Tabar Laszlo und Tony Hsiu-Hsi Chen. „Computer-aided disease prediction system: development of application software with SAS component language“. Journal of Evaluation in Clinical Practice 11, Nr. 2 (April 2005): 139–59. http://dx.doi.org/10.1111/j.1365-2753.2005.00514.x.

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Shi, Yingjie, und Zijian Zhao. „Computer-Aided Software Development and Application in Physical Education in Colleges and Universities“. Computer-Aided Design and Applications 19, S1 (23.03.2021): 59–69. http://dx.doi.org/10.14733/cadaps.2022.s1.59-69.

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Konovalchik, A. P., M. Y. Konopelkin, V. N. Korchagova, S. V. Strizhak, M. V. Kraposhin, M. A. Kudrov und I. A. Martynov. „Using open source software in development of computer-aided design systems for radar“. Journal of «Almaz – Antey» Air and Space Defence Corporation, Nr. 2 (30.06.2019): 92–101. http://dx.doi.org/10.38013/2542-0542-2019-2-92-101.

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The paper focuses on creation of a software component designed for the automated calculation of the stress-strain state of radar structure. The relevance of the work is shown, the statement of the problem, methods for its solution and the main development results are given
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Cheng, Ran. „SDL Trados and Tmxmall: A Comparative Study of Computer-Aided Translation Tools“. Journal of Networking and Telecommunications 2, Nr. 4 (31.01.2021): 76. http://dx.doi.org/10.18282/jnt.v2i4.1379.

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<p>Technological development has brought about a series of changes, including influences on the traditional translation industry which is unable to meet the future needs due to its low efficiency and limited forms. Computer-aided translation software, shortened as CAT software, is therefore developed. Featuring powerful memory and fast computing speed of computers, CAT software allows translators to give full scope to creativity, which enhances traditional translation efficiency. In recent years, both CAT software and cloud translation software have been rapidly developed. The latter is built based on cloud computing technology, and is emerging one after another. This article, taking such CAT software as SDL Trados and such cloud translation platform as Tmxmall as examples, studies similarities and differences between the two different kinds of tools in terms of operation interface, translation project management and corpus management. By analyzing features of the two tools, this article seeks to provide references for translators and software engineers.</p>
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39

Maba, Adem. „Computer-aided music education and musical creativity“. Journal of Human Sciences 17, Nr. 3 (07.08.2020): 822–30. http://dx.doi.org/10.14687/jhs.v17i3.5908.

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It has become an absolute necessity to integrate informatics into educational activities as it is in all areas of life by using innovative teaching methods in the globalized world. As in other fields, developing the knowledge and experience of students by using information technologies in music education should be one of the principles of today's education system. Utilizing computer technologies and software applications especially in the areas of music perception in order to promote the creativity and knowledge contributes to an increase in students' positive attitude towards the course by enriching the context of the course. If a complex and difficult topic, such as composing music, which is one of the upper dimensions of creativity, is supported by the computer technologies and software applications, it will obviously help students to understand the process that is very demanding and create a product. In addition, many subjects that are difficult and abstract for everyone to conceive can be made easier by means of the computer technologies and software. When the educational programs developed in recent years are examined, it can be seen that informatics is included in many learning outcomes and activities aiming to improve musical creativity. In this study, detailed information about the effect of computer-aided education on the development of musical creativity is given. Suggestions for future studies are also presented.
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40

Ivasev, Aleksandr E., Iurii A. Lapshov und Kirill V. Sviatov. „THE SOFTWARE CONTROLLED EXPERIENCE BASE OF A COMPUTER-AIDED SYSTEM DESIGNER“. АВТОМАТИЗАЦИЯ ПРОЦЕССОВ УПРАВЛЕНИЯ 63, Nr. 1 (2021): 110–18. http://dx.doi.org/10.35752/1991-2927-2021-1-63-110-118.

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The article describes an approach to the creation of an experience base for a software design organization, which is focused on its application in the development of software-intensive automated systems (AS). The use of the proposed experience base extends the potential of the OwnWIQA tool-modeling environment in the workplace of a member of the software design team. The specificity of the toolkit includes the design of a reusable model (precedent model) in the process of work execution on the design of an AS, which is included in the experience base for the purpose of its further use in the development of AS or the creation of a new AS from the same family. The article describes the knowledge base model of software projects, tools for finding use cases, implemented in the OwnWIQA environment. Experimental studies are described that reveal the parameters of precision and recall for a precedent search in the knowledge base. The factors influencing these indicators for different users of the system are given. The article may be of interest to specialists in the field of building knowledge and experience bases.
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41

Hammons, Charles, und Paul Dobbs. „Multilevel files for software development“. ACM SIGPLAN Notices 20, Nr. 1 (Januar 1985): 27–30. http://dx.doi.org/10.1145/988284.988289.

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42

Booch, Grady. „Managing object-oriented software development“. Annals of Software Engineering 2, Nr. 1 (Dezember 1996): 237–58. http://dx.doi.org/10.1007/bf02063812.

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43

Tu, Y. L., R. Y. K. Fung, J. F. Tang und J. J. Kam. „Computer-Aided Customer Interface for Rapid Product Development“. International Journal of Advanced Manufacturing Technology 21, Nr. 10-11 (01.07.2003): 743–53. http://dx.doi.org/10.1007/s00170-002-1385-0.

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44

Barrawaz, Aateka Y. „COMPUTER AIDED DRUG DESIGN: A MINI-REVIEW“. Journal of Medical Pharmaceutical And Allied Sciences 9, Nr. 5 (15.10.2020): 2584–91. http://dx.doi.org/10.22270/jmpas.v9i5.971.

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New drug discovery and development process is considered much complex process which is time consuming and resources accommodating too. So computer aided drug design are being broadly used to enhance the effectiveness of the drug discovery and development process which ultimately saves time and resources. Various approaches to Computer aided drug design are evaluated to shows potential techniques in accordance with their needs. Two approaches are considered to designing of drug first one is structure-based and second one is Ligand based drug designs. In this review, we are discussing about highly effective and powerful techniques for drug discovery and development as well as various methods of Computer aided drug design like molecular docking at virtual screening for lead identification, QSAR, molecular homology, de-novo design, molecular modeling and optimization. It also elaborate about different software used in Computer aided drug design, different application of Computer aided drug design etc. Major objectives of Computer aided drug design are to commence collaborative foundation of research activities and to discover new chemical entities for novel therapeutics drugs
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Mahmood, S., R. Lai und Y. S. Kim. „Survey of component-based software development“. IET Software 1, Nr. 2 (01.04.2007): 57–66. http://dx.doi.org/10.1049/iet-sen:20060045.

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46

Feng, Bin, Hai Lian Deng und Li Ping Yang. „Analysis of Computer-Aided Design Software Used in Home Textiles of Digital Design“. Applied Mechanics and Materials 751 (April 2015): 293–97. http://dx.doi.org/10.4028/www.scientific.net/amm.751.293.

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This paper will discuss computer-aided design software use in textile design, from the development of computer-aided design applications and home textiles design, software is the core of computer-aided design in textile design, graphic combined with three-dimensional software, building the systematic of home textiles design and computer-aided design to enhance the artistic beauty of textile design. Secondly, introduce the two-dimensional and three-dimensional software application in fabric pattern and textile design. We can see the convenience of computer-aided design, which combines technology and art in one. And from the comparison of plane and solid software, both proposed to build a systematic mutual, for textile design, which is based on the performance requirements and the effect of artistic design, and the theoretical analysis of consumer purchase intention and behavior; and discussing from the beauty of color、 formal and spatial three aspects of computer-aided design to enhance the artistic beauty of textile design.
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47

Notkin, David. „The relationship between software development environments and the software process“. ACM SIGPLAN Notices 24, Nr. 2 (03.02.1989): 107–9. http://dx.doi.org/10.1145/64140.65013.

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48

Asuaje, M., F. Bakir, S. Kouidri, R. Noguera und R. Rey. „Computer-aided design and optimization of centrifugal pumps“. Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy 219, Nr. 3 (01.05.2005): 187–93. http://dx.doi.org/10.1243/095765005x7556.

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Improvement in computer power and the development of numerical computational methods over the last few years have allowed the emergence of computational fluid dynamic (CFD) codes, making possible the numerical simulation of flow and energy transfer in turbomachines. To improve the efficiency of these tools, fast design software must be used. Within the framework of the optimization process of centrifugal pumps, HELIOX software was developed. It is a tool for design and performance analysis of centrifugal pumps. HELIOX allows quick design of new pumps and improvement of existing ones. HELIOX's performance analysis has been validated through many industrial cases: approximately 100 machines of different sizes and mechanical power. Heliox can be linked to quasi-and three-dimensional analysis tools; these tools enable a better understanding of physical phenomena so as to control the flow fields inside pumps.
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49

DAVID HURLEY, W. „INTEGRATING USER INTERFACE DEVELOPMENT AND MODERN SOFTWARE DEVELOPMENT“. International Journal of Software Engineering and Knowledge Engineering 02, Nr. 02 (Juni 1992): 227–50. http://dx.doi.org/10.1142/s0218194092000117.

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A long-term goal for software engineers is integrating the separate processes of user interface development and modern software development. With emergent CASE technology, software engineers can begin to explore ways to achieve this integration. Exploration involves investigating candidate methodologies that let developers apply different development strategies to different parts of an interactive system. Disciplined long-term investigation requires that the fundamental principles governing each process be fixed and that evolving development methods comprising each process be accommodated. This paper proposes a computer-based process model that fixes the principles and accommodates evolving methods. Model features include a collection of software engineering and knowledge engineering techniques that supports a development organization of human and computer-based agents, a coordination activity that supports opportunistic behavior of developers, a unifying representation that leads to mutually consistent results from developers, and an extendable topology that enhances collaboration among developers while reducing their communications burden.
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50

Jabbari, Mostafa, Magnus Lundin, Saeed Bahadorikhalili, Mikael Skrifvars und Mohammad J. Taherzadeh. „Finding Solvent for Polyamide 11 Using a Computer Software“. Zeitschrift für Physikalische Chemie 234, Nr. 3 (26.03.2020): 517–29. http://dx.doi.org/10.1515/zpch-2018-1299.

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AbstractThe solvent finding step has always been a time-consuming job in chemical-involved processes. The source of difficulty mainly comes from the trial-and-errors, as a repetitive process of chosing solvents and mixing them in different proportions. Computers are good at doing repetitive processes; however, they can only deal with numerical values, rather than qulitative scales. Numerification of qualitative parameters (like solubility) has already been introduced. The most recent one is the Hansen solubility parameters (HSPs). Using the HSPs could provide a solvent or solvent-mixture. In our previous study, we introduced a computer-aided model and a software to find a solvent mixture. In this study, we have used the computer-aided solvent selection model to find some solvent mixtures for polyamide 11, a biobased polymer which has attracted enormous attention recently. Using this numerical model significantly diminished the time of solvent development experimentation by decreasing the possible/necessary trials.
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