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hyGWO-PS Tuned FOPID for AGC of Three Area Interconnected Hydro-Thermal Power System

机译:Hygwo-PS调谐FOPID用于三个区域的AGC互连的水热电力系统

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In the present work, the application of a mixed/hybrid algorithm: grey wolf optimization-pattern search (hyGWO-PS) has been elaborated for automatic generation control (AGC) of three area interconnected hydro-thermal power system. The fractional-order proportional-integral-derivative (FOPID) controller has been incorporated in each area of the investigated power system and controllers' parameters have been tuned/optimized using the hyGWO-PS algorithm. For this purpose, a constrained control optimization problem has been defined with minimum and maximum ranges of controllers' parameters in which objective function: integral of time multiplied absolute error (ITAE) is minimized. The application of hyGWO-PS algorithm to tune the controllers' parameters for the same is abbreviated as hyGWO-PS/FOPID approach. The results carried out using the proposed approach for the investigated system have also been compared with some existing approaches and the results reveal that the proposed approach: hyGWO-PS/FOPID for the aforesaid power system produces the better performance in terms of ITAE, settling times/peak overshoots, number of oscillations and speed of frequency and tie line power deviations while comparing with some other approaches in the literature. The percentage reduction in ITAE, settling times, and overshoots with respect to other techniques have also been evaluated which shows the improvement in aforesaid parameters with respect to other existing techniques.
机译:在本作工作中,已阐述了混合/混合算法的应用:三个区域互连水热电力系统的自动生成控制(AGC)进行了灰狼优化模式搜索(HYGWO-PS)。分数级比例积分衍生物(FOPID)控制器已结合在调查的电力系统的每个区域中,并且使用Hygwo-PS算法进行了调整/优化了控制器参数。为此目的,已经限制了一个约束的控制优化问题,其中包含最小和最大控制器参数范围,其中目标函数:时间乘以绝对误差(ITAE)被最小化。 Hygwo-PS算法在调整控制器的参数的应用缩写为Hygwo-PS / FoPID方法。利用所提出的调查系统方法进行的结果也与一些现有的方法进行了比较,结果表明,所提出的方法:上述电力系统的Hygwo-PS / FoPid在ITAE方面产生了更好的性能,稳定时间/峰值过冲,振荡数量和频率速度和系列电源偏差,同时与文献中的其他一些方法相比。也已经评估了ITAE,沉降时间和过冲的百分比,沉降时间和过冲,其示出了关于其他现有技术的前述参数的改善。

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