Accounting for clock frequency variation in the analysis of distributed factory control systems

W. Henderson, D. Kendall, A. Robson
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引用次数: 5

Abstract

Microcontrollers are now widely deployed as components in distributed systems. Temporal predictability is often important for such embedded systems-i.e., software must execute within specified time bounds to maintain safe operation of the system as a whole. Microcontroller clocks exhibit random variation in resonant frequency from one component to another, a temperature sensitivity and gradual changes with time. Thus, the execution speed of software will vary when implemented on different processors of the same class. We highlight the vulnerability of standard scheduling analysis in the presence of clock frequency uncertainty when applied to the performance prediction of distributed embedded systems. We propose a modified scheduling analysis to account for the inevitable range of processor clock rates in embedded distributed systems and confirm our analysis by an empirical study using a CAN for inter-processor communication.
在分布式工厂控制系统分析中考虑时钟频率的变化
微控制器现在作为组件广泛部署在分布式系统中。对于这样的嵌入式系统,时间可预测性通常很重要。,软件必须在规定的时间范围内运行,以保持整个系统的安全运行。微控制器时钟表现出谐振频率从一个组件到另一个组件的随机变化,温度敏感性和随时间逐渐变化。因此,在同一类的不同处理器上实现时,软件的执行速度会有所不同。在应用于分布式嵌入式系统的性能预测时,我们强调了时钟频率存在不确定性时标准调度分析的脆弱性。我们提出了一种改进的调度分析,以解释嵌入式分布式系统中处理器时钟速率的不可避免的范围,并通过使用CAN进行处理器间通信的实证研究来证实我们的分析。
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