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Low Voltage Ride Through (LVRT) Strategies for Single Phase Grid Connected PV Fed Cascaded Multilevel Inverter

机译:通过(LVRT)通过(LVRT)频率为单相网连接PV馈电级联多级逆变器

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In this paper, cascaded multilevel inverter based PV (CMIPV) system performance is investigated under perturbing voltage condition at PCC, viz, voltage sag by robust multi mode control, demonstrating low voltage ride through (LVRT) capability. The decoupled d-q based methodology provides an efficient and independent control of individual H-bridges for active/reactive power. The controller is design to regulate the individual DC link voltages according to the voltage dictated by maximum power point (MPP) algorithm or guided by grid codes keeping the capacity of the inverter system fixed. As per the condition of PCC voltage the controller displaces the operating point from MPP to other lower power to accommodate reactive power as per grid code. The performance of the proposed configuration and control is investigated both through MATLAB simulation and experimentation.
机译:本文通过稳健的多模式控制,在PCC,VIZ,电压下滑的扰动电压条件下对基于级联的多级逆变器的PV(CMIPV)系统性能进行了研究,通过稳健的多模式控制,通过(LVRT)能力。去耦的D-Q基方法提供了对主动/无功功率的单个H桥的有效和独立控制。控制器是设计,根据最大功率点(MPP)算法(MPP)算法(MPP)算法指定的电压来调节各个DC链路电压,或者由网格码保持固定的逆变器系统的容量。根据PCC电压的条件,控制器将操作点从MPP移位到其他较低的电源以适应电网代码的无功功率。通过MATLAB模拟和实验研究了所提出的配置和控制的性能。

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