Transient response of single-phase photovoltaic inverters to step changes in supply voltage distortion

E. Kaufhold, Jan Meyer, P. Schegner
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引用次数: 5

Abstract

This paper presents an experimental study on the transient response of three commercially available photovoltaic (PV) inverters on step changes in the supply voltage distortion. Step changes of individual harmonics are applied to three different PV inverters varying in order, amplitude and phase angle. Moreover, different times of switching in terms of the fundamental frequency, i.e. points on wave, are considered. From the laboratory results presented, it can be seen that the inverters behave very different. To quantify the dynamic response characteristics, three parameters of interest are defined and evaluated: the overshoot of the grid-side current, the settling time and the eigenfrequencies of the transient response. The dependencies of these parameters on the above mentioned impact factors are analyzed, which can be used e.g. to develop dynamic models of PV inverters. The paper demonstrates the importance for assessing the transient response (dynamic behavior) of PV inverters and the individuality of their behavior, which requires inverter-make dependent models for grid-studies. A single model covering different makes of inverters is insufficient.
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单相光伏逆变器对电源电压畸变阶跃变化的瞬态响应
本文对三种市售光伏逆变器在电源电压畸变阶跃变化时的瞬态响应进行了实验研究。将单个谐波的阶跃变化应用于三个不同的PV逆变器,其顺序、幅度和相位角都发生了变化。此外,根据基频,即波上的点,考虑了不同的开关时间。从实验室给出的结果可以看出,逆变器的性能有很大的不同。为了量化动态响应特性,定义并评估了三个感兴趣的参数:电网侧电流的超调量、稳定时间和瞬态响应的特征频率。分析了这些参数对上述影响因子的依赖关系,这些影响因子可用于例如建立PV逆变器的动态模型。本文论证了评估光伏逆变器的暂态响应(动态特性)及其特性的重要性,这就需要建立与逆变器相关的模型来进行电网研究。单一型号涵盖不同品牌的逆变器是不够的。
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Important Considerations in Development of PV Inverter Models for High Frequency Emission (Supraharmonic) Studies Transient response of single-phase photovoltaic inverters to step changes in supply voltage distortion ICHQP 2020 Title Page Current Practice on Power Quality Legislation within European Transmission Systems – Results from Horizon 2020 Project MIGRATE Evaluation of Jacobian used in Simulation of Nonlinear Circuits in the Modified Harmonic Domain
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