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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Robust Feedback Control for Nonminimum Phase, Delayed, or Unstable Systems with Multiple Inputs
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Robust Feedback Control for Nonminimum Phase, Delayed, or Unstable Systems with Multiple Inputs

机译:具有多个输入的非最小相位,延迟或不稳定系统的强大反馈控制

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摘要

This paper presents a feedback control solution that achieves robust stability and disturbance rejection in systems with multiple manipulated inputs and a single measurable output. The uncertain plant models may exhibit either nonminimum phase, or delay, or unstable phenomena, which makes it not easy to take full advantage of the frequency response of each plant. In the framework of quantitative feedback theory (QFT), a methodology is proposed to decide the best control bandwidth distribution among inputs and to design the set of parallel controllers with as small as possible gain at each frequency. The temperature regulation in a continuous stirred-tank reactor (CSTR) illustrates the benefits of a quantitative frequency distribution of the dynamic controllability between the jacket flow and the feed flow. The main challenge is that the feed flow exhibits a higher temperature regulation capacity and also produces a temporary decrease in the reactor temperature (nonminimum phase behaviour).
机译:本文介绍了一种反馈控制解决方案,可实现具有多个操纵输入的系统中的鲁棒稳定性和干扰抑制和单个可测量的输出。不确定的植物模型可以表现出非最大阶段或延迟或不稳定的现象,这使得不容易充分利用每个植物的频率响应。在定量反馈理论(QFT)的框架中,提出了一种方法来决定输入之间的最佳控制带宽分布,并在每个频率下设计具有尽可能小的并联控制器集。连续搅拌罐反应器(CSTR)中的温度调节示出了夹套流动与进给流之间的动态可控性的定量频率分布的益处。主要挑战是进料流量表现出更高的温度调节能力,并且还产生反应器温度(非最小相行为)的暂时降低。

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