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Harmonic Analysis of LV distribution networks with high PV penetration

机译:高PV渗透率的低压配电网的谐波分析

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This paper presents a harmonic study of different parallel photovoltaic (PV) systems connected to a low voltage distribution network to identify potential resonance between PV inverters and system impedance. LCL filters are commonly employed in PV inverters and recommended by IEEE 929-2000. These filters, however, by interacting with each other as well as with the system, may generate multiple harmonic resonances at the Point of Common Coupling (PCC). The harmonic modelling of the current source and the resonance mechanism is presented and explained through mathematical analysis. The resonance peaks and the voltage harmonic distortion can be efficiently attenuated by adding a passive damping resistor in the filter, the value of which may be obtained from the parametric results. Moreover, the potential of operating the PV as an active power filter is considered, by modelling the harmonic source of the PV under an out-of-phase strategy, to achieve a cancellation effect of the injected harmonic currents at the PCC. The reported simulation results suggest that the multi-resonance adverse effects caused by different PVs may be significantly mitigated and will not cause real problems in low voltage networks.
机译:本文介绍了对连接到低压配电网络的不同并联光伏(PV)系统的谐波研究,以识别PV逆变器和系统阻抗之间的潜在谐振。 LCL滤波器通常用于光伏逆变器中,并受到IEEE 929-2000的推荐。但是,这些滤波器通过相互以及与系统的相互作用,可能会在公共耦合点(PCC)处产生多个谐波谐振。通过数学分析,给出并解释了电流源的谐波建模和谐振机理。通过在滤波器中添加一个无源阻尼电阻,可以有效地衰减谐振峰值和电压谐波失真,其值可以从参数结果中获得。此外,通过在异相策略下对PV的谐波源进行建模,可以考虑将PV用作有源功率滤波器的潜力,以实现PCC注入的谐波电流的抵消效果。报告的仿真结果表明,由不同PV引起的多共振不利影响可能会大大减轻,并且不会在低压网络中引起实际问题。

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