Dissipativity based analysis and control of process networks with varying time delay

M. J. Tippett, C. Zheng, J. Bao
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引用次数: 2

Abstract

An approach to distributed plant-wide analysis and control of networked systems with varying time delay in discrete time is presented, with a particular focus on chemical process systems. Plant-wide stability and performance conditions are ensured by putting constraints on the dissipativity properties of the plant-wide system, which is a linear function of the dissipativity properties of individual subsystems. To facilitate this, dynamic supply rates in the form of quadratic difference forms are used, which provide less conservative stability conditions than traditional forms of dissipativity and allow for the effect of time delays to be captured. The control design procedure includes a global planning stage where the required dissipativity of each controller is determined, followed by the independent synthesis of each controller which may take the form of either a linear controller or model predictive controller. This framework may be extended to consider additional forms of uncertainty.
基于耗散的变时滞过程网络分析与控制
提出了一种在离散时间下具有变时延的网络系统的分布式全厂分析和控制方法,并特别关注化学过程系统。全厂范围的稳定性和性能条件是通过对全厂系统的耗散特性施加约束来保证的,耗散特性是单个子系统耗散特性的线性函数。为了实现这一点,使用了二次差分形式的动态供应率,它比传统形式的耗散率提供更少的保守稳定性条件,并允许捕获时间延迟的影响。控制设计过程包括一个全局规划阶段,其中确定每个控制器所需的耗散率,然后是每个控制器的独立综合,可以采用线性控制器或模型预测控制器的形式。这个框架可以扩展到考虑其他形式的不确定性。
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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