分析大规模接入分布式发电对电压的影响,以减少人口密集地区的电力中断

Karielis Fernández Aguilar, Jessica Guevara Cedeño
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引用次数: 0

摘要

本研究的重点是实施分布式发电,以减少人口密集地区的停电次数,因为一些研究人员已经发表了它可能带来的好处。实施的方法旨在确定DG渗透的适当百分比,以解决由低电压水平引起的电力中断问题。因此,将采用IEEE 34节点测试系统,通过实施ETAP电力系统分析软件进行潮流仿真。该过程将通过不同的DG渗透场景进行,最终根据电压和功率参数分析结果,从而研究电网的能量质量和能量损失的增加。主要结果是DG渗透水平直接相关,应用相同数量的DG时四个研究领域,它是观察到,为了确定的百分比DG渗透,有必要找到影响最为严重的地区,在本例中是最低的电压水平,导致目前最大的增加和获得相当大的比例,但遵守既定的参数。本研究为中压配电层面的DG集成奠定了基础,并提出了今后在低压配电层面的研究工作。
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Analysis of the impact on voltage due to the massive connection of distributed generation to reduce electrical interruptions in densely populated areas
This study has focused on the implementation of distributed generation to reduce the number of power cuts in densely populated areas, due to its possible benefits that have been published by some researchers. The implemented methodology seeks to determine an adequate percentage of DG penetration to solve electrical interruption problems caused by low voltage levels. Therefore, the power flow simulations will be performed by implementing the ETAP power system analysis software, using the IEEE 34-node test system. The process will be carried out through different DG penetration scenarios, to finally analyze the results based on the voltage and power parameters, which allow studying the quality of energy and the increases in energy losses of the electrical networks. The main results obtained are directly related to the level of DG penetration where, when applying the same amount of DG in the four study areas, it was observed that in order to determine the percentage of DG penetration, it is necessary to find the areas with the greatest effect on the, which in this case was the one with the lowest voltage level, causing the greatest increase in current and obtaining a considerable percentage, but complying with the established parameters. This research lays the foundations for the integration of DG at the medium voltage distribution level, for which future work is proposed on the study at the low voltage distribution level.
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