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Control of DVR using Variable Step-Size Griffith's LMS with Optimized tuning of Proportional Integrator Gains

机译:使用可变步长Griffith的LMS进行DVR控制,并优化调整比例积分器增益

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This paper deals with Dynamic Voltage Restorer (DVR) with a topology having three single phase H-Bridge voltage source converters (VSCs). The Power Quality (PQ) issues addressed by DVR with this topology are sag, swell, imbalances, and distortions in supply voltage. This topology has the advantage of allowing the reduced rating of DC-bus capacitor. The control that is proposed for operation of DVR to compensate the aforesaid PQ issues is VSG-LMS. VSG-LMS stands for Variable Step-size Griffith's Least Mean Square, named after Griffiths cross correlation concept has been added which is free from observation noise concept. Also the step size in this algorithm is dynamically variable using the Okello's variable step size algorithm. This control algorithm contains two Proportional and Integral (PI) controllers for maintaining the DC-link voltage and load terminal voltage respectively. The gains of these error regulators are tuned using Dragonfly based Optimization (DFO) technique. The main advantage of this technique is that the characteristics of optimization algorithms exploration and exploitation which improves the optimization process are achieved by the static and dynamic behaviors of dragon. After compensation of PQ issues listed above, the simulation result have been presented in this paper to evaluate the proposed control algorithm on the DVR.
机译:本文涉及具有三个单相H桥电压源转换器(VSC)的拓扑的动态电压恢复器(DVR)。 DVR使用此拓扑解决的电源质量(PQ)问题是下垂,膨胀,不平衡和电源电压失真。这种拓扑的优点是允许降低直流母线电容器的额定值。为DVR的运行建议的用于补偿上述PQ问题的控件是VSG-LMS。 VSG-LMS代表可变步长的格里菲斯最小均方,以添加了格里菲斯互相关概念而得名,该概念没有观测噪声概念。同样,使用Okello的可变步长算法,该算法中的步长是动态可变的。该控制算法包含两个比例和积分(PI)控制器,分别用于维持直流母线电压和负载端子电压。这些误差调节器的增益可使用基于蜻蜓的优化(DFO)技术进行调整。该技术的主要优点是通过龙的静态和动态行为来实现优化算法探索和开发的特性,从而改善了优化过程。在补偿了上面列出的PQ问题之后,本文给出了仿真结果,以评估在DVR上提出的控制算法。

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