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Fractional order controller robust to time delay variations for water distribution in an irrigation main canal pool

机译:分数阶控制器对灌溉主渠池中的水分配具有时延变化的鲁棒性

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摘要

This paper proposes a new strategy for the control of water distribution in an irrigation main canal pool characterized by large time-varying time delays. Time delays may change drastically in an irrigation main canal pool as a consequence of variations in its hydraulic operation regime. An original methodology is developed to design fractional order PI controllers combined with Smith predictors that yield control systems which are robust to changes in the process time delay. This methodology is applied to solve the problem of effective water distribution control in an irrigation main canal pool. Simulated results of standard PI and PID controllers plus a Smith predictor are compared with the controller developed in this paper when applied to the dynamic model of a real irrigation main canal pool. The simulation results show that the proposed controller outperforms standard controllers in terms of performance and robustness.
机译:本文提出了一种时滞较大的灌溉主渠水分配控制新策略。由于其液压操作方式的变化,灌溉主渠池中的时间延迟可能会发生巨大变化。开发了一种原始方法来设计分数阶PI控制器,并与Smith预估器相结合,从而产生对过程时间延迟的变化具有鲁棒性的控制系统。该方法用于解决灌溉主渠池中有效水分配控制的问题。将标准PI和PID控制器以及Smith预估器的仿真结果与本文开发的控制器应用于实际灌溉主渠池的动态模型进行比较。仿真结果表明,所提出的控制器在性能和鲁棒性方面均优于标准控制器。

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