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Solar generation impact on voltage of rural power distribution networks: A case study

机译:太阳能发电对农村配电网电压的影响:一个案例研究

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Power generation using solar photovoltaics connected to the grid has become popular in the agricultural sector, especially in family farming, as an economic and environmental-friendly alternative. In this case, however, generators are normally installed at remote locations, where total line impedance value seen from the feeder is relatively high, resulting in substantial voltage drop/rise when load/generator is integrated. This paper presents a case study based on the analysis of low-voltage, rural distribution system of Santana da Vargem, MG. Evidence of damage to consumer electronic equipment due to voltage rise caused by distributed generation operation during the off season of coffee harvest is examined. The investigation of the problem is based on a brief review on voltage variation due to distributed generation and on a comparative analysis of measured data to limit values stablished by normative references. It was verified that grid voltage at the point of common coupling of a distributed generator reached a value of 1.23 p.u., which led to the burning of household appliances connected nearby.
机译:作为经济和环境友好的替代方案,使用连接到电网的太阳能光伏发电已经在农业领域,特别是在家庭农业中流行。但是,在这种情况下,发电机通常安装在偏远的位置,从馈线看到的总线路阻抗值相对较高,当负载/发电机集成在一起时会导致电压大幅下降/上升。本文基于对MG,Santana da Vargem的低压农村配电系统的分析,提供了一个案例研究。研究了在咖啡收获淡季期间由分布式发电操作引起的电压升高导致的消费电子设备损坏的证据。对问题的研究基于对由于分布式发电引起的电压变化的简要回顾,以及对测量数据与规范参考所确定的极限值的比较分析。证实了在分布式发电机的公共耦合点的电网电压达到1.23p.u.的值,这导致附近连接的家用电器的燃烧。

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