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Droop based DG allocation in weakly meshed autonomous microgrid

机译:基于DG的自主微电网的DG分配

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The rising renewable based power penetration in the conventional distribution systems have popularized the concept of autonomous microgrids. However, frequency (f) and voltage (V) deviations are major concern due to intermittency of load and renewable generations. The droop based DGs can supply the growing load but require an optimal placement and an optimal droop coefficient so that their allocation does not cause f and V deviations beyond standard limits. In the present work, optimal droop-based DGs placement and its corresponding optimal droop coefficient calculation has been done to supply rising loads considering minimization of f and V deviations. The analysis has been conducted on standard IEEE-33 weakly meshed distribution network which has been modified as autonomous microgrid. The results have been obtained for various load levels and valuable conclusions have been drawn in the end.
机译:传统分配系统中的上升可再生的功率渗透已经推广了自主微电网的概念。然而,由于负载和可再生代的间歇性,频率(F)和电压(V)偏差是主要的关注。下垂的DGS可以提供​​不断增长的负载,但需要最佳放置和最佳的下垂系数,使得它们的分配不会导致超出标准限制的F和V偏差。在本作工作中,已经完成了基于最佳的下垂的DGS放置及其相应的最佳下垂系数计算来提供考虑最小化F和V偏差的上升载荷。该分析已经在标准IEEE-33弱网状分布网络上进行,该网络已被修改为自主微电网。已经获得了各种载荷水平的结果,并终止了有价值的结论。

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