Power Quality Evaluation in a Microgrid Implementation

Mariana N. Cunha e Silva, S. M. Silva, I. Pires
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Abstract

The implementation of microgrids including distributed energy resources is an efficient energy solution with regard to saving financial and environmental resources and assisting in the stability and reliability of the power system. However, some unwanted effects such as voltage fluctuations, unbalance, frequency changes and harmonic distortions due to the Distributed Renewable Generations (DRGs) and non-linear loads operations may affect the power quality within the microgrid, making necessary studies and analyzes, to maintain the quality indicators at satisfactory levels. The power quality in systems with distributed generation (DG) is discussed in papers mostly through mathematical and computational modeling and these do not allow the consideration of equipment operation characteristics. It is therefore necessary to complement the theoretical studies with experimental results [1]. This study aims to evaluate the power quality at the connection point where a microgrid was installed on a university campus to characterize the energy scenario to which the microgrid will be submitted. It was found that the system had a monthly average of22.9 voltage sag events, 1.8 interruptions per month, 2.37% of total voltage harmonic distortion, 0.283% of voltage fluctuation, and unbalance below 0.5%.
微电网实现中的电能质量评估
包括分布式能源在内的微电网的实施是一种有效的能源解决方案,可以节省财政和环境资源,并有助于电力系统的稳定和可靠性。然而,由于分布式可再生能源发电机组(DRGs)和非线性负荷运行所产生的电压波动、不平衡、频率变化和谐波畸变等不良影响可能会影响微电网内的电能质量,因此需要进行必要的研究和分析,以使质量指标保持在令人满意的水平。文献中对分布式发电系统电能质量的讨论大多是通过数学和计算建模来进行的,没有考虑到设备的运行特性。因此,有必要用实验结果来补充理论研究[1]。本研究旨在评估微电网在大学校园内安装的连接点的电能质量,以表征微电网将提交的能源方案。结果表明,该系统月平均电压凹陷22.9次,中断1.8次,电压畸变占总电压畸变的2.37%,电压波动占总电压畸变的0.283%,不平衡率低于0.5%。
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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