Influence of modulation technique on power quality issues for grid connected converter

B. Dumnic, B. Popadic, D. Milićević, V. Katić, Z. Čorba
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引用次数: 5

Abstract

Recent development in the power electronic converters, especially those intended for the use in renewable energy applications, emphasize the importance of resolving power quality issues of the grid connected converters. With the increase in number, distributed energy resources will predominantly determine the harmonic content, as the most common power quality indicator, of the grid current and voltages. Therefore, new converter control structures, capable of mitigating harmonics in the injected currents, and consequently voltages, have to be developed. One of the most common path taken for the power quality enhancement is the harmonic compensation. However, even if the significant improvement can be achieved, harmonic compensation can yield different results when paired with different modulation techniques. This paper analyzes the influence of converter modulation techniques on harmonic content of the injected current. Extensive simulation and experimental comparison between two of the most common techniques (sinus PWM and space vector modulation) was performed. MATLAB/Simulink model is used to obtain preliminary simulation results, and the experimental results were acquired using advanced laboratory prototype for testing distributed energy resources. Results show the difference between the two techniques, their advantages and disadvantages. In addition, the influence of the technique on power quality of the injected currents, and their interaction with harmonic compensation is presented.
调制技术对并网变流器电能质量的影响
电力电子变流器的最新发展,特别是用于可再生能源应用的电力电子变流器,强调了解决并网变流器电能质量问题的重要性。随着分布式能源数量的增加,电网电流和电压作为最常见的电能质量指标,其谐波含量将占主导地位。因此,必须开发新的变换器控制结构,能够减轻注入电流中的谐波,从而降低电压。谐波补偿是提高电能质量最常用的途径之一。然而,即使可以实现显著的改进,当与不同的调制技术配对时,谐波补偿也会产生不同的结果。本文分析了变换器调制技术对注入电流谐波含量的影响。在两种最常见的技术(窦脉宽调制和空间矢量调制)之间进行了广泛的仿真和实验比较。利用MATLAB/Simulink模型获得初步仿真结果,并利用先进的实验室样机对分布式能源进行测试,获得实验结果。结果显示了两种技术的差异,以及各自的优缺点。此外,还分析了该技术对注入电流电能质量的影响,以及它们与谐波补偿的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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