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Feedback Control as MAPE-K Loop in Autonomic Computing

机译:自主控制中作为MAPE-K回路的反馈控制

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Computing systems are becoming more and more dynamically reconfigurable or adaptive, to be flexible w.r.t. their environment and to automate their administration. Autonomic computing proposes a general structure of feedback loop to take this into account. In this paper, we are particularly interested in approaches where this feedback loop is considered as a case of control loop where techniques stemming from Control Theory can be used to design efficient safe, and predictable controllers. This approach is emerging, with separate and dispersed effort, in different areas of the field of reconfigurable or adaptive computing, at software or architecture level. This paper surveys these approaches from the point of view of control theory techniques, continuous and discrete (supervisory), in their application to the feedback control of computing systems, and proposes detailed interpretations of feedback control loops as MAPE-K loop, illustrated with case studies.
机译:计算系统变得越来越动态地可重新配置或自适应,从而变得更加灵活。他们的环境并使其管理自动化。自主计算提出了反馈回路的一般结构来考虑这一点。在本文中,我们特别关注将这种反馈回路视为控制回路的方法,在这种方法中,可以将源自控制理论的技术用于设计有效的安全且可预测的控制器。这种方法是在软件或体系结构级别的可重构或自适应计算领域的不同领域中,通过单独和分散的努力而出现的。本文从连续和离散(监督)控制理论技术的角度对这些方法进行了研究,并将其应用于计算系统的反馈控制,并提出了将反馈控制环作为MAPE-K环的详细解释,并举例说明。学习。

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