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Embedded real-time systems in cyber-physical applications: a frequency domain analysis methodology

机译:网络物理应用中的嵌入式实时系统:频域分析方法

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摘要

Cyber-Physical Systems (CPSs) use sensors and actuators to interface between an embedded system and the physical world. The time-continuous domain of the physical world should be periodically sampled by real-time tasks in an embedded system to preserve its dynamic properties in the time-discrete domain. Because the task execution pattern may vary during runtime, a jitter in the execution of a real-time task hinders the periodicity of its execution. The effects of jitters in CPSs are difficult to determine when the premises of the Nyquist-Shannon sampling theorem are not satisfied. This paper proposes using frequency domain analysis to determine the perturbations that a real-time system produces on real-world applications; accordingly, the paper defines both a design and an evaluation criterion for real-time systems in CPS applications. The Fixed Priority discipline is analysed through simulations to conclude that no special design techniques are required when the utilization factors are less than 20%.
机译:网络物理系统(CPS)使用传感器和执行器在嵌入式系统和物理世界之间接口。应通过嵌入式系统中的实时任务定期采样物理世界的连续领域,以在时间离散域中保留其动态属性。因为任务执行模式可能在运行时变化,所以执行实时任务中的抖动会阻碍其执行的周期性。 CPS在CPS中的影响很难确定何时应对奈奎斯 - 香农采样定理的场所。本文建议使用频域分析来确定实时系统在真实应用程序上产生的扰动;因此,本文定义了CPS应用中的实时系统的设计和评估标准。通过模拟分析固定优先纪律,以得出结论,当利用因素小于20%时,不需要特殊的设计技术。

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