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Harmonic current prediction by impedance modeling of grid-tied inverters: A 1.4 MW PV plant case study

机译:通过并网逆变器的阻抗模型预测谐波电流:1.4 MW光伏电站案例研究

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摘要

Grid-tied inverters are the main responsible for the successful integration of photovoltaic (PV) plants in the power grid. Two important challenges are the integration of power plants based-inverters and their contribution to the power system quality. This work analyzes the features of inverter impedance models when used in harmonic integration studies. It is aimed to estimate the harmonic current contribution as a function of the background harmonic voltages components. Time domain simulations based on detailed and average models are compared with the impedance model developed in frequency domain. In grids with harmonic voltages, impedance models can predict the current distortion for all active power injection scenarios. Furthermore, measurements in a 1.4 MW PV plant connected in a distributed grid are used to validate the simulation based on impedance models during different power injections and harmonic voltage profiles. Results reinforce that impedance models can represent with relatively accuracy the harmonic current emitted by the PV plants at the point of common coupling (PCC). Lastly, a stress test is performed to show how a variation in the harmonic voltage phase angle impacts the PV plant harmonic emission. (C) 2017 Elsevier Ltd. All rights reserved.
机译:并网逆变器是光伏电站成功整合到电网中的主要负责人。两个重要的挑战是发电厂逆变器的集成及其对电力系统质量的贡献。这项工作分析了在谐波积分研究中使用的逆变器阻抗模型的特征。目的在于估计作为背景谐波电压分量的函数的谐波电流贡献。将基于详细模型和平均模型的时域仿真与在频域中开发的阻抗模型进行比较。在带有谐波电压的电网中,阻抗模型可以预测所有有功功率注入情况下的电流失真。此外,在分布式电网中连接的1.4 MW光伏电站中的测量用于基于在不同功率注入和谐波电压曲线期间的阻抗模型来验证仿真。结果加强了阻抗模型可以相对准确地表示公共耦合点(PCC)处光伏电站发出的谐波电流。最后,进行压力测试以显示谐波电压相角的变化如何影响光伏电站的谐波发射。 (C)2017 Elsevier Ltd.保留所有权利。

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