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Water cycle algorithm-based PID controller for AVR

机译:基于水循环算法的AVR PID控制器

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PurposeIn a power system, the purpose of automatic voltage regulator (AVR) is the voltage control of synchronous generator. Power system stability and security depends on the AVR.Design/methodology/approachThe present work is concentrated on the precise terminal voltage control of AVR system and simultaneously maintaining the stability of the system. Therefore, an optimal proportional-integral-derivative (PID) controller is proposed. An optimization technique inspired from Mother Nature, i.e. water cycle algorithm (WCA) is used to evaluate the optimum parameter values of PID controller leading to WCA-tuned PID (WCA-PID). The performance of WCA-PID is compared with other controller reported in the literature.FindingsSimulation results show that WCA-PID regulates the terminal voltage more preciously and accurately in comparison to other controller. Further, it is more robust toward parametric uncertainty, set-point tracking and disturbance rejection in comparison to other controller reported in the literature.Originality/valueThe work is not published anywhere else.
机译:目的是电力系统,自动电压调节器(AVR)的目的是同步发电机的电压控制。电力系统稳定性和安全性取决于AVR.Design/Methodology/ApproCh本工作集中在AVR系统的精确端子电压控制上,同时保持系统的稳定性。因此,提出了最佳的比例积分衍生物(PID)控制器。一种从母亲的优化技术,即水循环算法(WCA)用于评估通向WCA调谐PID(WCA-PID)的PID控制器的最佳参数值。将WCA-PID的性能与文献中报告的其他控制器进行比较.FindingsImulation结果表明,与其他控制器相比,WCA-PID更加精确地调节端子电压。此外,与文献中报告的其他控制器相比,朝着参数不确定度,设定点跟踪和干扰抑制更加稳健。或者在其他任何地方都没有公布。

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