基于并联有源电力滤波器的隔离微电网电能质量改善

R. Deshpande, M. S. Raviprakasha
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引用次数: 0

摘要

在所有可用的能源中,由于易于运输、灵活和控制,电能被广泛应用于许多部门。任何国家的发展都直接依赖于电力行业的发展。印度大部分农村地区仍然没有足够的家庭网络连接,主要是由于偏远地区。此外,运行输电线路在经济上也不可行。因此,为了使偏远地区通电,孤立微电网作为一种解决方案正日益受到研究团体的研究。本文考虑了应用于隔离微电网的电能质量问题,主要涉及负载电流谐波的缓解和频率调节。在MATLAB/Simulink环境下开发了并联型有源电力滤波器及其控制策略。并联有源滤波器与离散频率控制器配合使用,在不同稳态和暂态条件下均表现良好。所提出的模型显示出与已建立的模式一致的结果。该模型的THD小于5%,符合IEEE 519标准的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power quality improvements in Isolated Microgrid based on Shunt Active Power Filter
Among all the available sources of energy, Electrical energy is widely used in many sectors because of ease of transportation, flexibility and control. The development of any country directly relies on the growth of power sector. Most of the rural India still do not have adequate household connections, due mainly to remotely placed localities. Further, it is not economically viable to run the transmission lines. Hence, to electrify the remote sites, Isolated Microgrids are increasingly being studied, as a solution, by the research fraternity. In this paper, Power quality concerns, involving mainly the mitigation of load current harmonics and frequency regulation as applied to Isolated Microgrid are considered. A shunt Active Power Filter and associated control strategy is developed in the MATLAB/Simulink environment. The shunt APF in conjunction with the discrete frequency controller performs well under different steady state and transient conditions. The proposed model is shown to yield results that are in line with the established patterns. The proposed model has a THD of less than 5%, which compiles well with that specified by the IEEE 519 standard.
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