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EDA for cyber-physical systems

机译:电子物理系统的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阶梯。从自动化任务(例如集成电路设计中的布局,布局规划和布线)开始,EDA现在涵盖了许多系统级设计任务。但是,EDA社区面临的下一个挑战是开发用于网络物理系统(CPS)设计的方法和工具。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都以紧密集成的方式进行建模和设计。当前没有可用的EDA方法和工具来处理这种集成的建模和设计。特别是,用于建模工厂动力学和设计其控制器的建模工具(例如Matlab / Simulink)与用于设计和配置最终用于这些控制器的硬件/软件平台的工具之间存在很大的脱节。实施的。在这个扩展的摘要中,我们讨论了这种断开连接的后果以及解决这种情况的可能方法。

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