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Load transfer and islanding analysis of active distribution network

机译:主动配电网的负荷转移和孤岛分析

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When fault occurs in distribution network, the loads of faulty line are transferred to adjacent lines to restore the power supply. The interconnection of distributed generator (DG) and energy storage system (ESS) poses challenge to traditional load transfer, and loads that are not restored by the load transfer can be islanded with DG and ESS to further reduce the outage. To address this issue, model of power supply capacity of autonomous local control region and active distribution network line are established, considering the power restrictions of DG and ESS, and this model is effective to simplify the network of load transfer. Constraints for practical islanded operation, including the restriction of backup capacity against the power fluctuation are proposed, and a practical stepwise optimal algorithm is put forward for load transfer and islanding based on the radial characteristic of distribution network. In contrast to traditional intelligence algorithm, the computation amount of load transfer and islanding has been reduced by the proposed stepwise optimal algorithm, and the islanding is also well considered that further reduces the outage. The case study shows that the computation amount is reduced by about 70% comparing with genetic algorithm, and the restored load is increased by about 40%. Copyright © 2014 John Wiley & Sons, Ltd.
机译:当配电网发生故障时,故障线路的负载会转移到相邻线路以恢复供电。分布式发电机(DG)和储能系统(ESS)的互连给传统的负荷转移带来了挑战,并且负荷转移无法恢复的负荷可以通过DG和ESS隔离,以进一步减少停机。为解决这一问题,建立了自治区控制区域和有源配电网线路的供电能力模型,并考虑了DG和ESS的功率限制,有效简化了负荷转移网络。提出了实际孤岛运行的约束条件,包括备用容量对功率波动的限制,并根据配电网的径向特性,提出了一种实用的逐步优化算法,用于负荷的转移和孤岛。与传统的智能算法相比,提出的逐步优化算法减少了负荷转移和孤岛的计算量,并且考虑到孤岛也可以进一步减少停机。案例研究表明,与遗传算法相比,计算量减少了约70%,恢复的负载增加了约40%。版权所有©2014 John Wiley&Sons,Ltd.

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