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Control of a String of Identical Pools Using Non-Identical Feedback Controllers

机译:使用非相同反馈控制器控制一串相同池

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In the distant-downstream control of irrigation channels, the interactions between pools and the internal time-delay for water to travel from upstream to downstream, impose limitations on global performance, i.e., there exists propagation of water-level errors and amplification of flows over gates in the upstream direction. This brief analyzes these coupling properties for a string of identical pools, both with identical feedback controllers and with non-identical feedback controllers. A definition of string stability in terms of bounded water-level errors and bounded flows is given. It is shown that for a string of an infinite number of pools, string stability cannot be achieved by decentralized distant-downstream feedback control mainly due to the internal time-delay for water to travel from upstream to downstream. Applying the analysis results on string stability to a string of a finite number of pools, i.e., using non-identical feedback controllers in a distant-downstream control structure such that the closed-loop bandwidths of the subsystems increase from downstream to upstream, a much better global performance can be achieved than in the case of using identical feedback controllers.
机译:在对灌溉渠道的远距离下游控制中,水池之间的相互作用和内部水从上游流向下游的时间延迟,对整体性能造成了限制,即存在水位误差的传播和水流的放大上游方向的闸门。本文简要分析了具有相同反馈控制器和不相同反馈控制器的一串相同池的耦合特性。根据有界水位误差和有界流给出了弦稳定性的定义。结果表明,对于无限数量的水池,由于分散的远-下游反馈控制,主要由于水从上游流向下游的内部​​时间延迟,因此无法通过稳定的远下游反馈控制来实现串的稳定性。将对字符串稳定性的分析结果应用于有限数量的池的字符串,即,在遥远的下游控制结构中使用不同的反馈控制器,从而使子系统的闭环带宽从下游到上游增加了很多与使用相同的反馈控制器相比,可以实现更好的全局性能。

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