Double Tuned filter design for harmonic mitigation in grid connected solar PV

B. H. Yong, V. Ramachandaramurthy
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引用次数: 15

Abstract

Renewable energy plays a significant part in the power generation revolution in line with the future smart grid focus. In Malaysia, one of the largest, clean and green energy produced is the solar PV energy. With obvious increase of penetration by renewable energies especially solar energy, in years to come the grid system is capable to self-sustain as micro grid without heavily depending from fossil fuel source. As the power flow will no longer be a one-way route generation, power quality issues arises from these interconnection can be very damaging to the grid and distribution assets if not handled well especially on harmonic issues. This paper presents the implementation of Double-Tuned filter for harmonic attenuation in a test case grid model. The design of the proposed filters is validated by simulation results in PSCAD software. The results show that the improved design meets the standards parallel to the THD and individual harmonic limits.
并网太阳能光伏系统谐波抑制的双调谐滤波器设计
可再生能源在发电革命中发挥着重要作用,符合未来智能电网的重点。在马来西亚,最大的清洁和绿色能源之一是太阳能光伏能源。随着可再生能源尤其是太阳能的渗透率明显提高,未来几年,电网系统将能够作为微电网自我维持,而不会严重依赖化石燃料来源。由于电力流将不再是单向的,因此如果处理不好,特别是在谐波问题上,这些互连所产生的电能质量问题可能会对电网和配电资产造成极大的破坏。本文介绍了在测试用例网格模型中实现谐波衰减的双调谐滤波器。通过PSCAD软件的仿真结果验证了所设计滤波器的有效性。结果表明,改进后的设计满足平行于THD和个别谐波限值的标准。
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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