Modelling, evaluation, and adaptive control of an instrumentation system

A. Waheed, D. Rover, M. Mutka, Hugh M. Smith, Aleksandar Bakic
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引用次数: 5

Abstract

We present results from modeling and evaluating the JEWEL instrumentation system (IS), which is being used for runtime data collection from a distributed, real-time application. Our modeling and evaluation effort addresses two objectives: (1) providing early feedback to the system developers regarding the JEWEL IS configuration options for this application; and (2) evaluation of the design alternatives for an adaptive controller to control the overhead and intrusion of the JEWEL IS to a real-time video conferencing application. For JEWEL IS design, we compare two data collection and forwarding policies (collect-and-forward and batch-and-forward). For the design of the adaptive controller, we compare two adaptation policies (static and dynamic adaptation) and two policies to schedule the implementation of the control decisions (distributed and centralized scheduling). Results reported in this paper indicate that the batch-and-forward policy for IS design static adaptation policy with distributed scheduling for the adaptive controller design meet the domain-specific requirements.
仪表系统的建模、评估和自适应控制
我们展示了对JEWEL仪器系统(IS)建模和评估的结果,该系统用于从分布式实时应用程序中收集运行时数据。我们的建模和评估工作有两个目标:(1)为系统开发人员提供关于该应用程序的JEWEL IS配置选项的早期反馈;(2)评估自适应控制器的设计方案,以控制JEWEL IS对实时视频会议应用的开销和入侵。对于JEWEL IS设计,我们比较了两种数据收集和转发策略(收集并转发和批处理并转发)。对于自适应控制器的设计,我们比较了两种自适应策略(静态自适应和动态自适应)以及两种调度策略(分布式调度和集中式调度)来实现控制决策。研究结果表明,IS设计的批处理转发策略满足了自适应控制器设计的分布式调度静态自适应策略的领域要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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