Photovoltaic energy impact on grid's distribution line voltage for different load levels

Amal Jenni, J. Belhadj, Mongi Chammakhi, R. Dakhli
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Abstract

Distributed energy integration into the grid is increasing. This is due to its benefits such as environmental and economic compared to conventional systems. Use of renewable energy resource offers several advantages for both final consumer and utility grid. However, this may have an undesirable impact if it's not suited to grid's specifications. Several problems arise especially those related to line voltage stability. This paper studies the impact of photovoltaic energy on voltage distribution line. The grid's part including district zone modeling and power flow simulation was done. Different scenarios for several renewable power levels are considered under various load states. The simulation results showed voltage drop in long feeder end in absence of distributed generator. Photovoltaic power injection will treat this problem and will reduce line losses but may be accompanied by over voltage risk on distribution line due to reverse power flow.
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不同负荷水平下光伏能量对电网配电网电压的影响
分布式能源并网正在增加。这是由于与传统系统相比,它在环境和经济方面的优势。可再生能源的使用对最终用户和电网都有很多好处。然而,如果它不适合网格的规范,这可能会产生不良影响。出现了几个问题,特别是与线路电压稳定性有关的问题。本文研究了光伏发电对配电网电压的影响。对电网部分进行了分区建模和潮流仿真。在不同的负荷状态下,考虑了几种可再生能源水平的不同方案。仿真结果表明,在没有分布式发电机的情况下,长馈线端电压下降。光伏发电可以解决这一问题,减少线路损耗,但由于反向潮流,配电线路可能存在过电压风险。
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