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Optimal allocation of renewable dg sources in distribution networks considering load growth

机译:考虑负荷增长的可再生Dg来源在配电网络中的最佳分配

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The annual increasing of load demand in electrical distribution networks leads to line congestion, decreasing the bus voltages below the acceptable limits and increasing the active and reactive power losses. However, renewable distributed generation (DG) has received increasing attention due to that growing in load demand. This paper presents a hybrid method based on moth-flame optimization (MFO) algorithm with loss sensitivity factor (LSF) to assign the optimal location and size of renewable DG units including solar (PV) and wind (WTG) based DG for minimizing the power losses taking into account the effect of annual load growth. The performance of this developed method is tested on IEEE 69-bus branch distribution system by comparing the results with other optimization techniques, the obtained results illustrate significant reduction in power loss, improvement in system voltage and increasing the distribution system capacity.
机译:配电网络中负载需求的逐年增加导致线路拥塞,将母线电压降低到可接受的极限以下,并增加有功和无功功率损耗。但是,由于负荷需求的增长,可再生分布式发电(DG)受到了越来越多的关注。本文提出了一种基于蛾-火焰优化(MFO)算法和损失敏感性因子(LSF)的混合方法,以分配可再生DG单元的最佳位置和大小,包括基于太阳能(PV)和风(WTG)的DG,以最大程度地降低功率损失考虑了年度负荷增长的影响。通过将结果与其他优化技术进行比较,在IEEE 69总线分支配电系统上测试了该开发方法的性能,所获得的结果说明了功率损耗的显着降低,系统电压的提高以及配电系统容量的增加。

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