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Design of a Proportional Resonant Controller with Resonant Harmonic Compensator and Fault Ride Trough Strategies for a Grid-Connected Photovoltaic System

机译:并网光伏系统中带有谐振谐波补偿器和故障穿越策略的比例谐振控制器的设计

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This paper presents the design and analysis of a proportional resonant controller with a resonant harmonic compensator and switch-type fault current limiter, as a fault-ride through strategy for a three-phase, grid-connected photovoltaic (PV) system under normal conditions and asymmetrical faults. The switch-type fault limiter comprised of current-limiting inductors, a bridge rectifier, a snubber capacitor, linear transformers, and energy absorption bypass. Furthermore, a critical and analytical comparison of switch-type fault limiters is carried out, with the conventional crowbar as the fault-ride through strategy, in combination with a conventionally tuned proportional integrator controller. The designed fault-ride through strategies with proportional integrator and proportional resonant controllers with resonant harmonic compensators are tested at the point of common coupling of the photovoltaic system and at a distance of 19 km from the point of common coupling, in order to analyze the impacts of fault parameter with respect to location. A MATLAB/Simulink model of a 100 kW three-phase grid-connected photovoltaic system is used for analysis. The simulation results of the proposed switch-type fault limiter with proportional resonant controller effectively validate the stable, ripple-free, and robust response compared to all other configurations. In addition, it is also verified that the grid faults on the PV system have a significant impact on fault type, and less impact on fault location.
机译:本文介绍了具有谐振谐波补偿器和开关型故障限流器的比例谐振控制器的设计和分析,作为通过三相策略在正常条件下并网的光伏系统的故障穿越策略。不对称断层。开关型故障限制器包括限流电感器,桥式整流器,缓冲电容器,线性变压器和能量吸收旁路。此外,结合常规调校比例比例积分控制器,以常规撬棍作为故障穿越策略,对开关型故障限制器进行了关键性和分析性的比较。在光伏系统的公共耦合点和距公共耦合点19 km的距离处测试了具有比例积分器和比例谐振控制器,具有比例谐振器的比例策略设计的故障穿越功能,以分析影响故障参数与位置的关系。使用100 kW三相并网光伏系统的MATLAB / Simulink模型进行分析。与所有其他配置相比,拟议的带有比例谐振控制器的开关型故障限制器的仿真结果有效地验证了稳定,无纹波和鲁棒的响应。此外,还验证了光伏系统上的电网故障对故障类型有重大影响,而对故障位置的影响较小。

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