Maximization of System Benefits with the Optimal Placement of DG and DSTATCOM Considering Load Variations

Maximization of System Benefits with the Optimal Placement of DG and DSTATCOM Considering Load Variations
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考虑负载变化,通过 DG 和 DSTATCOM 的最佳布局实现系统效益最大化

DOI:
10.1016/j.procs.2018.10.446
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发表时间:
2018
期刊:
Procedia Computer Science
影响因子:
--
通讯作者:
P. Acharjee
P. Acharjee
中科院分区:
--
文献类型:
--
作者:
Surajit Sannigrahi;P. Acharjee

文献摘要

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提出了一种基于根树优化(RTO)算法的分布式电源(DG)和分布式静止补偿器(DSTATCOM)在配电网中的优化配置问题,以使系统效益最大化。创新的公式,如指数的电压分布增强(IVPE),指数的损失减少(ILR)和指数的污染减少(IPR)被用来衡量不同方面的设备。RTO算法应用于33节点配电系统,考虑了可变负荷,此后,设备的性能判断的基础上的不同方面。此外,DG和DSTATCOM同时放置和整体系统效益也进行了研究。通过与其他标准算法的比较,验证了所提出的RTO算法的准确性。
This paper proposed the rooted tree optimization (RTO) algorithm to solve the optimal placement problem of distributed generation (DG) and distributed static compensator (DSTATCOM) in the distribution system to maximize the system benefits. Innovative formulas such as index of voltage profile enhancement (IVPE), index of loss reduction (ILR), and index of pollution reduction (IPR) are utilized to measure different aspects of the devices. The RTO algorithm is applied on the 33-bus distribution system considering a variable load and thereafter, the performances of the devices are judged on the basis of the different aspects. Furthermore, both DG and DSTATCOM are simultaneously placed and the overall system benefit is also investigated. The accuracy of the proposed RTO algorithm is checked by comparing it with others standard algorithms.