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Influences of Power Electronic Converters on Voltage–Current Behaviors During Faults in DGUs—Part II: Photovoltaic Systems

机译:功率电子转换器对DGU故障期间电压-电流行为的影响-第二部分:光伏系统

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摘要

Photovoltaic (PV) systems have become a popular type of distributed generation units (DGUs) for small and medium levels of renewable energy generation. When grid connected, these DGUs are designed and operated to deliver electric power to their host grid through power electronic converters. The nonlinear and switched natures, along with the control actions, of these PECs can influence the voltage–current behaviors during faults in grid-connected PV systems. This paper experimentally investigates the voltage–current behaviors during faults occurring in grid-connected PV systems. Results of these investigation show that voltages and currents at the point-of-common-coupling (PCC) experience changes in their magnitudes and harmonic distortions due to faults occurring on both sides of PCC. These results can be incorporated in the improvement of the accuracy and reliability of protective devices used for grid-connected PV systems.
机译:光伏(PV)系统已成为用于中小型可再生能源发电的流行类型的分布式发电单元(DGU)。当与电网连接时,这些DGU的设计和操作可以通过电力电子转换器将电力输送到其主电网。这些PEC的非线性和开关特性以及控制行为会影响并网光伏系统故障期间的电压-电流行为。本文通过实验研究了光伏并网系统发生故障期间的电压-电流行为。这些研究的结果表明,由于在PCC两侧出现故障,公共耦合点(PCC)上的电压和电流会发生幅度变化和谐波失真。这些结果可以并入提高并网光伏系统中保护装置的准确性和可靠性。

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