谐波平衡有限元法及其在电力系统和可再生能源系统中的应用

Junwei Lu, Xiaojun Zhao
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摘要

电力系统谐波畸变主要是由电力系统、分布式可再生能源系统和微电网中使用的非线性负荷和电力电子器件引起的。电网中非线性负荷的存在和分布式可再生能源系统数量的增加有助于改变电力系统中电压和电流波形的特性。这种引入非正弦电流消耗模式(电流谐波)的电气负载可以在电力电子中找到。此外,高压(HV)直流电力系统、分布式可再生能源系统和微电网以及由地磁干扰(GMDs)和地磁感应电流(gic)引起的高压电力系统中也会产生谐波。介绍和发展了谐波平衡有限元法及其在电力系统、分布式可再生能源系统和微电网中的应用。
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Harmonic balance FEM and its application in power system and renewable energy systems
Power system harmonic distortion is mainly caused by non-linear loads and power electronics used in the electrical power system and distributed renewable energy systems and Microgrids. The presence of non-linear loads and the increasing number of distributed renewable energy systems in electrical grids contribute to changing the characteristics of voltage and current waveforms in power systems. Such electrical loads which introduce non-sinusoidal current consumption patterns (current harmonics) can be found in power electronics. In addition, the harmonics can be generated in high voltage (HV) DC power systems, distributed renewable energy systems and Microgrids, and in HV power system caused by Geomagnetic Disturbances (GMDs) and Geomagnetic Induced Currents (GICs). This paper introduces and develops harmonic balance finite element method (HBFEM) and its application in power system and distributed renewable energy systems and Microgrids.
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