Study on Harmonic Suppressions by optimization-based Three-Phase Three-Wire PV-APF

Yu-Jen Liu, Po-Yu Hou, Tsung-Han Kuo, Y. Lee, Chin-Chan Cheng, Yen-Fu Chen
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Abstract

With a large number of non-linear loads are integrated into the electric grids, they cause the significant power quality problems; meanwhile, harmonic is one of the problems that be paid more concerns, and it is necessary to seek useful ways for suppressions. Nowadays, solar PV power generations become one of the main streams among various renewable energy. Under the applicable control design, PV power not only can provide general power generation but also can used for power quality improvement. This paper thus mainly focuses on the study of harmonic suppression on low-voltage system by three-phase three-wire PV-APF system. For the proposed PV-APF system, it consists of: dual second order generalized integrator-phase-locked loop design for exact harmonic detection, self-tuning synchronous reference frame method for the calculation of harmonic compensation currents, a multi-mode strategy for the PV-APF to operate in different modes, and a bat-optimization PI controller for the better PV-APF control. MATLAB/Simulink is used for modeling and testing in this paper. Performance of proposed PV-APF design is finally be well validated by different load scenarios.
基于优化的三相三线制PV-APF谐波抑制研究
随着大量非线性负荷的加入,电网的电能质量问题日益突出;同时,谐波也是人们越来越关注的问题之一,有必要寻求有效的抑制方法。目前,太阳能光伏发电已成为各种可再生能源中的主流之一。在适用的控制设计下,光伏发电不仅可以提供一般的发电,还可以用于改善电能质量。因此本文主要研究三相三线制PV-APF系统对低压系统的谐波抑制。本文提出的PV-APF系统包括:用于精确谐波检测的双二阶广义积分器锁相环设计,用于计算谐波补偿电流的自整定同步参考框架方法,用于PV-APF在不同模式下工作的多模式策略,以及用于更好控制PV-APF的蝙蝠优化PI控制器。本文采用MATLAB/Simulink进行建模和测试。最后,通过不同的负载场景验证了所提出的PV-APF设计的性能。
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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