基于LPV增益调度PID的以太网分布式运动控制

Y. Bolea, A. Grau-Saldes, Juan Gamiz-Caro
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引用次数: 2

摘要

在将控制理论方法应用于计算机系统(如Web服务器、网络、数据库和存储系统)的性能管理方面,已经有了越来越多的研究工作。由于当今的以太网网络和应用程序有时在动态变化的负载条件下运行,这会在网络控制系统(NCS)中引入时变延迟,因此线性控制设计可能不足以提供稳定性和/或期望的性能保证。研究将以太网应用于分布式系统是运动控制行业中一个有趣的话题,因为它的商用现成硬件可用性和兼容性相对较低的价格。本文提出了一种用于以太网分布式运动控制的线性参数变增益调度(LPV - GS)方法,以实现闭环稳定性和服务质量(QoS)。
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LPV Gain-Scheduled PID for Distributed Motion Control via Ethernet
There has been increasing research effort in applying control-theoretic approaches to performance management for computer systems such as Web servers, networked, database, and storage systems. Since today's Ethernet networks and applications are sometimes operated under dynamically changing load conditions that introduce a time-varying delay in the networked control systems (NCS), linear control designs may not suffice to provide stability and/or desired performance guarantee. Research on adapting Ethernet for distributed systems is an interesting topic in the motion control industry, due its commercially off-the-shelf hardware availability and compatibility at a comparative lower price. This paper presents a linear-parameter-varying gain-scheduling (LPV GS) approach for distributed motion control via Ethernet in order to achieve the stability of the closed-loop and the quality of service (QoS).
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