嵌入式控制系统的稳定感知分析与设计

A. Aminifar, P. Eles, Zebo Peng, A. Cervin
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引用次数: 19

摘要

许多嵌入式系统包括几个共享可用资源的控制器。众所周知,这种资源共享导致复杂的定时行为,如果在设计过程中没有适当地考虑到,例如映射和调度,则可能危及控制应用程序的稳定性。与硬实时系统相反,在硬实时系统中,满足截止日期是一个关键要求,控制应用程序不强制执行硬截止日期。因此,传统的实时分析方法不容易适用于控制应用。相反,在控制应用程序的上下文中,稳定性通常是需要保证的主要需求,并且可以表示为控制应用程序可以容忍的延迟和抖动量。标称延迟和响应时间抖动是影响系统控制性能和稳定性的两个主要因素。因此,分析调度参数(即周期和优先级)的变化对标称延迟和响应时间抖动的影响以及最终对稳定性的影响是很重要的。在此基础上,本文讨论了以稳定性为主要要求的控制应用的优先级分配和灵敏度分析问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stability-aware analysis and design of embedded control systems
Many embedded systems comprise several controllers sharing available resources. It is well known that such resource sharing leads to complex timing behavior that can jeopardize stability of control applications, if it is not properly taken into account in the design process, e.g., mapping and scheduling. As opposed to hard real-time systems where meeting the deadline is a critical requirement, control applications do not enforce hard deadlines. Therefore, the traditional real-time analysis approaches are not readily applicable to control applications. Rather, in the context of control applications, stability is often the main requirement to be guaranteed, and can be expressed as the amount of delay and jitter a control application can tolerate. The nominal delay and response-time jitter can be regarded as the two main factors which relate the real-time aspects of a system to control performance and stability. Therefore, it is important to analyze the impact of variations in scheduling parameters, i.e., period and priority, on the nominal delay and response-time jitter and, ultimately, on stability. Based on such an analysis, we address, in this paper, priority assignment and sensitivity analysis problems for control applications considering stability as the main requirement.
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