首页> 外文期刊>Asian Journal of Control >TIME DOMAIN TUNING OF FRACTIONAL ORDER CONTROLLERS COMBINED WITH A SMITH PREDICTOR FOR AUTOMATION OF WATER DISTRIBUTION IN IRRIGATION MAIN CHANNEL POOLS
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TIME DOMAIN TUNING OF FRACTIONAL ORDER CONTROLLERS COMBINED WITH A SMITH PREDICTOR FOR AUTOMATION OF WATER DISTRIBUTION IN IRRIGATION MAIN CHANNEL POOLS

机译:分数阶控制器与史密斯预测器相结合的时域调整,用于灌溉主渠道池中的水分配自动化

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摘要

This paper proposes a new technique for designing fractional order controllers applied to the automation of main canal pools of a water irrigation system. As large variation of all the plant parameters is present in such systems, a fractional order family of controllers combined with a Smith Predictor is designed using time domain specifications. The designed controllers are compared with the standard combination of a Smith Predictor with a proportional-integral (PI) controller. All these controllers are tuned to fulfil the same time specifications in the case of canal nominal dynamics. In some canals the plant parameters may experience large changes that deteriorate the time response, and can even unstabilize the closed-loop system. The fractional controllers are therefore designed to minimize the loss of performance of the system to variations in these parameters. Simulated results show the performance improvements achieved with these controllers compared with a conventional PI controller.
机译:本文提出了一种用于水灌溉系统主渠池自动化的分数阶控制器设计新技术。由于此类系统中存在所有工厂参数的较大变化,因此使用时域规范设计了结合Smith预估器的分数阶控制器系列。将设计的控制器与Smith Smith预测器与比例积分(PI)控制器的标准组合进行比较。在运河标称动力的情况下,所有这些控制器都经过调整以满足相同的时间规格。在某些运河中,工厂参数可能会经历较大的变化,从而使时间响应变差,甚至可能使闭环系统不稳定。因此,分数控制器被设计为最小化由于这些参数的变化而导致的系统性能损失。仿真结果表明,与常规PI控制器相比,这些控制器实现了性能改进。

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