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Resource and performance trade-offs in real-time embedded control systems

机译:实时嵌入式控制系统中的资源和性能之间的权衡

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摘要

Embedded control systems are subject to conflicting demands: end-users ask for devices with better capabilities while strong industrial competition impose tight cost constrains that results in devices with limited resources. Current research in the multidisciplinary embedded systems discipline indicates that by combining realtime and control systems it is theoretically feasible to design resource-constrained embedded control systems capable of trading-off control performance and resource usage. This paper focuses on the implementation feasibility of recent state-of-the-art resource/performance-aware (RPA) policies that can be applied to a set of control loops that concurrently execute on a microprocessor. The objective of these policies is to improve control performance and/or to minimize resource utilization. The paper first reviews existing state-of-the-art RPA policies. Then it presents a performance evaluation framework (PEF) that permits to assess whether RPA policies can be implemented in practice. The PEF is designed using a modular approach and following the guidelines obtained by a taxonomic analysis performed on the state-of-the-art RPA policies. Finally, a case study is presented where the PEF is applied to a set of representative RPA policies. The case study reveals that the modularity of the PEF allows tailoring the framework to evaluate any specific RPA policy, which indicates that RPA policies can be implemented in practice. But it also reveals that the problem of assessing diverse RPA policies in fair conditions implies facing and solving conflicting demands by even taking decisions that may not favor equal all policies under evaluation. Nevertheless, the comparative analysis permits identifying potential benefits and drawbacks of each policy, as well as extracting design guidelines for future real-time embedded control systems theory and practice.
机译:嵌入式控制系统的需求是相互矛盾的:最终用户要求功能更好的设备,而激烈的工业竞争对成本造成了严格的限制,导致设备资源有限。当前在多学科嵌入式系统学科中的研究表明,通过将实时系统和控制系统相结合,设计能够权衡控制性能和资源使用情况的资源受限的嵌入式控制系统在理论上是可行的。本文重点介绍了最新的最新资源/性能感知(RPA)策略的实现可行性,该策略可以应用于在微处理器上同时执行的一组控制循环。这些策略的目的是提高控制性能和/或最小化资源利用。本文首先回顾了现有的最新RPA政策。然后,它提出了一个绩效评估框架(PEF),可以评估RPA政策是否可以在实践中实施。 PEF使用模块化方法设计,并遵循通过对最新RPA策略执行的分类分析获得的指导。最后,提出了一个案例研究,其中将PEF应用于一组代表性RPA政策。案例研究表明,PEF的模块化允许定制框架以评估任何特定的RPA策略,这表明RPA策略可以在实践中实施。但这也表明,在公平条件下评估各种RPA政策的问题意味着甚至通过做出可能不赞成所有被评估政策的决定来面对和解决相互矛盾的需求。尽管如此,比较分析仍可以确定每种策略的潜在利弊,也可以为未来的实时嵌入式控制系统理论和实践提取设计指南。

著录项

  • 来源
    《Real-time systems》 |2013年第3期|267-307|共41页
  • 作者单位

    Automatic Control Department, Technical University of Catalonia, Pau Gargallo 5, 08028 Barcelona, Spain;

    Automatic Control Department, Technical University of Catalonia, Pau Gargallo 5, 08028 Barcelona, Spain;

    Automatic Control Department, Technical University of Catalonia, Pau Gargallo 5, 08028 Barcelona, Spain;

    Automatic Control Department, Technical University of Catalonia, Pau Gargallo 5, 08028 Barcelona, Spain;

    Automatic Control Department, Technical University of Catalonia, Pau Gargallo 5, 08028 Barcelona, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    embedded control systems; resource utilization; control performance;

    机译:嵌入式控制系统;资源利用率;控制性能;

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