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EDA for cyber-physical systems

机译:用于网络物理系统的EDA

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摘要

Over the years, electronic design automation (EDA) has been moving up the design abstraction ladder. Starting from automating tasks like placement, floor-planning and routing in integrated circuits design, EDA now encompasses many system-level design tasks. However, the next challenge facing the EDA community is to develop methods and also tools for cyber-physical systems (CPS) design. For these systems, physical processes, control algorithms that control these processes, and the computation and communication platforms on which these control algorithms are implemented - are all modeled and designed in a tightly integrated fashion. Currently available EDA methods and tools are not equipped to handle such integrated modeling and design. In particular, there is a big disconnect between modeling tools - like Matlab/Simulink - that are used for modeling plant dynamics and designing their controllers, and the tools that are used to design and configure the hardware/software platforms on which these controllers are eventually implemented. In this extended abstract we discuss the consequences of this disconnect and possible ways of addressing this situation.
机译:多年来,电子设计自动化(EDA)一直在提升设计抽象梯。从自动化任务开始,如放置,落地计划和集成电路设计中的路由,EDA现在包含许多系统级设计任务。然而,EDA社区面临的下一个挑战是开发方法以及网络物理系统(CPS)设计的工具。对于这些系统,物理过程,控制这些过程的控制算法以及实现这些控制算法的计算和通信平台 - 所有这些都是以密切集成的方式建模和设计。目前可用的EDA方法和工具无法处理此类集成建模和设计。特别是,建模工具 - 类似MATLAB / SIMULINK之间存在大断开连接 - 用于建模工厂动态和设计控制器,以及用于设计和配置这些控制器最终的硬件/软件平台的工具实施的。在这种扩展摘要中,我们讨论了这种断开的结果和可能的方式解决这种情况。

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