Control of UPQC through Observer based System Integrated with Frequency Adaptive Loop and optimized PI Gains

S. Arya, Sayed Javed Alam
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Abstract

This paper addresses the functions of unified power quality controller (UPQC) during Power quality (PQ) issues on the distribution networks. The poor power quality is mainly a cause of harmonic currents, lower power factor, variation in supply voltage, etc. A UPQC is a Custom Power Devices (CPD) that reduces the voltage and current related PQ problems in the power distribution system. The proposed control algorithm for UPQC is a frequency adaptive loop (FAL) on first transformed module (FTM) of the observer method. As in most Phase Lock Loop (PLL) algorithms, where the transformation of variables into a synchronous reference frame is required to get phase angle detection. Nevertheless, in the case of FTM based FAL, it does not require conversion to estimate phase angle. The angular frequency used to detect unknown estimated parameters and positive-negative elements of the signal under any PQ problems. Another side, the optimal tuned value of proportional-integral (PI) gains are calculated using Firefly algorithm. So, the PI-controller gains are improving dynamic execution of UPQC Controller. The results are captured using MATLAB-Simulink and validated in real time to support the functionality of the UPQC.
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基于观测器的UPQC系统频率自适应环与优化PI增益集成控制
本文论述了统一电能质量控制器(UPQC)在配电网电能质量问题中的作用。电能质量差的主要原因是谐波电流、功率因数低、电源电压变化等。UPQC (Custom Power Devices)是一种可降低配电系统中与电压和电流相关的PQ问题的自定义电源器件。提出的UPQC控制算法是在观测器方法的第一变换模块(FTM)上加一个频率自适应环路(FAL)。与大多数锁相环(PLL)算法一样,需要将变量转换为同步参考系来进行相角检测。然而,在基于FTM的FAL中,它不需要转换来估计相角。在任何PQ问题下,用于检测未知估计参数和信号正负元素的角频率。另一方面,采用萤火虫算法计算比例积分增益的最优调谐值。因此,pi控制器的增益改善了UPQC控制器的动态执行。使用MATLAB-Simulink捕获结果并进行实时验证,以支持UPQC的功能。
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