Thyristor based SVC and multilevel qZSI for Active and Reactive power management in solar PV system

S. Rahman, M. Meraj, A. Iqbal, L. Ben‐Brahim, R. Alammari
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引用次数: 5

Abstract

In this paper, Active and Reactive power management with the utility grid is achieved by integrating 7-level quasi Impedance Source Inverter (qZSI) with Thyristor based elements (Thyristor Switched Capacitor (TSC) and Thyristor Switched Reactor (TSR)). Major portion of the reactive power is managed by the thyristor based elements and the remaining reactive power is managed by the cascaded qZSI. The main advantage here is that the major part of power generated from PV array will be supplied as active power to the utility grid. The rating of cascaded qZSI for reactive power is equal to half of least rated thyristor based SVC component in the system. Master-Slave Controller for controlling voltage at output of quasi impedance network of individual modules and the converter current is implemented. Saving in inverter's rating with the proposed topology in comparison to using only cascaded qZSI (for both active and reactive power management) is also provided. The proposed topology is simulated using Matlab/Simulink and the proposed concept is validated. The hardware setup developed and the experimental results are presented that matches well with the simulation results and theoretical findings.
基于晶闸管的SVC和多级qZSI在太阳能光伏系统有功和无功功率管理中的应用
本文通过将7电平准阻抗源逆变器(qZSI)与基于晶闸管的元件(晶闸管开关电容(TSC)和晶闸管开关电抗器(TSR))集成,实现了电网有功和无功功率管理。无功功率的主要部分由晶闸管元件管理,剩余的无功功率由级联的qZSI管理。这里的主要优点是,光伏阵列产生的大部分电力将作为有功电力供应给公用电网。级联qZSI的无功功率额定值等于系统中基于晶闸管的SVC元件的最小额定值的一半。实现了控制各模块准阻抗网络输出电压和变换器电流的主从控制器。还提供了与仅使用级联qZSI(用于有功和无功功率管理)相比,使用所提出的拓扑可以节省逆变器的额定功率。利用Matlab/Simulink对所提出的拓扑结构进行了仿真,验证了所提出的概念。实验结果与仿真结果和理论结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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