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Assessment of Energy Distribution Losses for Increasing Penetration of Distributed Generation

机译:增加分布式发电渗透率的能量分配损失评估

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摘要

High levels of penetration of distributed generation (DG) are a new challenge for traditional electric power systems, power injections from DCs change network power flows modifying energy losses. Although it is considered that DG reduce losses, this paper shows that this is not always true. This paper presents an approach to compute annual energy losses variations when different penetration and concentration levels of DG are connected to a distribution network. In addition, the impact on losses of different DG technologies, such as combined heat and power, wind power, photovoltaic, and fuel-cells, is analyzed. Results show that energy losses variation, as a function of the DG penetration level, presents a characteristic U-shape trajectory. Moreover, when DG units are more dispersed along network feeders, higher losses reduction can be expected. Regarding DG technologies, it should be noted that wind power is the one that shows the worst behavior in losses reduction. Finally, DG units with reactive power control provide a better network voltage profile and lower losses.
机译:分布式发电(DG)的高普及率是传统电力系统面临的新挑战,DC的电力注入改变了网络潮流,从而改变了能量损耗。尽管人们认为DG可以减少损失,但本文表明并非总是如此。本文介绍了一种用于计算当不同渗透和浓度水平的DG连接到配电网时年度能量损失变化的方法。此外,分析了不同DG技术(例如热电联产,风力发电,光伏发电和燃料电池)损失的影响。结果表明,作为DG渗透水平的函数的能量损失变化呈现出特征性的U形轨迹。此外,当DG单元沿网络馈线分布得更分散时,可以预期会有更高的损耗降低。关于分布式发电技术,应该指出的是,风电是在减少损失方面表现最差的一种。最后,带有无功功率控制的DG单元可提供更好的网络电压曲线并降低损耗。

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