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Cyber Physical Systems: Design Challenges

机译:网络物理系统:设计挑战

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Cyber-Physical Systems (CPS) are integrations of computation and physical processes. Embedded computers and networks monitor and control the physical processes, usually with feedback loops where physical processes affect computations and vice versa. The economic and societal potential of such systems is vastly greater than what has been realized, and major investments are being made worldwide to develop the technology. There are considerable challenges, particularly because the physical components of such systems introduce safety and reliability requirements qualitatively different from those in general-purpose computing. Moreover, physical components are qualitatively different from object-oriented software components. Standard abstractions based on method calls and threads do not work. This paper examines the challenges in designing such systems, and in particular raises the question of whether today's computing and networking technologies provide an adequate foundation for CPS. It concludes that it will not be sufficient to improve design processes, raise the level of abstraction, or verify (formally or otherwise) designs that are built on today's abstractions. To realize the full potential of CPS, we will have to rebuild computing and networking abstractions. These abstractions will have to embrace physical dynamics and computation in a unified way.
机译:网络物理系统(CPS)是计算和物理过程的集成。嵌入式计算机和网络监视并控制物理过程,通常具有反馈循环,其中物理过程影响计算,反之亦然。此类系统的经济和社会潜力远远大于已实现的内容,并在全球范围内进行重大投资来开发该技术。存在相当大的挑战,特别是因为这种系统的物理分量引入了与通用计算中的那些定性不同的安全性和可靠性要求。此外,物理分量与面向对象的软件组件定性不同。基于方法调用和线程的标准抽象不起作用。本文探讨了设计此类系统的挑战,特别是提出了今天计算和网络技术是否为CPS提供足够的基础。它得出结论,改进设计过程,提高抽象水平,或验证基于今天的抽象的设计,或验证(正式或以其他方式)设计。为了实现CPS的全部潜力,我们必须重建计算和网络抽象。这些抽象必须以统一的方式拥抱物理动态和计算。

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