Discrete-Event Modeling and Simulation : Theory and Applications

Discrete-Event Modeling and Simulation : Theory and Applications
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DOI:
10.1201/b10412
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发表时间:
2010-12
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其他
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收集了该领域最重要的科学家的工作,离散事件建模与仿真:理论与应用介绍了使用离散事件系统规范(DEVS)方法建模离散事件系统的最新技术。它介绍了形式化技术的最新进展、最新扩展以及各种应用的实际例子。本书涵盖了许多与建模和仿真体系结构的几个层次有关的主题。它讨论了DEVS模型开发支持和DEVS与其他方法的相互作用。描述了DEVS支持的不同形式的仿真、实时DEVS仿真的使用、DEVS与图变换的关系、DEVS变体对仿真性能的影响、以及可互操作性和可组合性,重点介绍了DEVS的标准化。本文还探讨了DEVS的扩展,新的形式主义,和DEVS模型的抽象,以及现实世界的系统识别和控制背后的理论和分析。为支持系统优化模型的生成和搜索,提出了一种基于系统实体结构及其向DEVS仿真模型转换的框架。此外,本书还探讨了许多有趣的例子,说明如何使用DEVS构建成功的应用程序,包括片上光网、施工/建筑设计、过程控制、工作流系统和环境模型。在DEVS理论,应用程序和方法的进步一站式资源,这卷提供了一个抽样的最佳研究领域,一个广阔的图片DEVS景观,并通过DEVS的方法启用趋势设定的应用程序。它为未来的研究发现提供了基础,并鼓励开发新的应用程序。
Collecting the work of the foremost scientists in the field, Discrete-Event Modeling and Simulation: Theory and Applications presents the state of the art in modeling discrete-event systems using the discrete-event system specification (DEVS) approach. It introduces the latest advances, recent extensions of formal techniques, and real-world examples of various applications. The book covers many topics that pertain to several layers of the modeling and simulation architecture. It discusses DEVS model development support and the interaction of DEVS with other methodologies. It describes different forms of simulation supported by DEVS, the use of real-time DEVS simulation, the relationship between DEVS and graph transformation, the influence of DEVS variants on simulation performance, and interoperability and composability with emphasis on DEVS standardization. The text also examines extensions to DEVS, new formalisms, and abstractions of DEVS models as well as the theory and analysis behind real-world system identification and control. To support the generation and search of optimal models of a system, a framework is developed based on the system entity structure and its transformation to DEVS simulation models. In addition, the book explores numerous interesting examples that illustrate the use of DEVS to build successful applications, including optical network-on-chip, construction/building design, process control, workflow systems, and environmental models. A one-stop resource on advances in DEVS theory, applications, and methodology, this volume offers a sampling of the best research in the area, a broad picture of the DEVS landscape, and trend-setting applications enabled by the DEVS approach. It provides the basis for future research discoveries and encourages the development of new applications.