Multi-objective Optimization Aiming to Minimize the Number of Power Quality Monitors and Multiple Fault Estimations in Unbalanced Power Distribution Systems

P. E. T. Martins, M. Oleskovicz
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Abstract

Utilities are already concerned about power quality monitoring. Several papers proposed strategies to choose the best locations to install power quality monitors, minimizing the investment cost while guaranteeing observability of power quality disturbances, mostly voltage sags. Although several papers stud-ied this problem in power transmission systems, many problems remain unsolved for power distribution systems, such as power quality monitors allocation in unbalanced distribution systems, the impact of distributed generation in allocation methods, and allocation of power quality monitor for fault location. This paper makes contributions in all these three points. It proposes a multi-objective binary integer linear programming model for unbalanced systems, which is still suitable for power transmission systems. Furthermore, we analyze the connection/disconnection of a distributed generator, and our tests showed no need to change allocation regardless of the generator connection status. Finally, the allocation method reduced the multiple estimation problem; therefore, meter-based fault location methods could improve their performance with our allocation.
不平衡配电系统电能质量监测和多重故障估计的多目标优化
电力公司已经开始关注电能质量监测。一些论文提出了选择最佳位置安装电能质量监测仪的策略,以最小化投资成本,同时保证电能质量干扰(主要是电压跌落)的可观察性。虽然已有多篇论文对输变电系统中电能质量监测器的配置问题进行了研究,但配电系统中电能质量监测器在不平衡配电系统中的分配、分布式发电对分配方法的影响、电能质量监测器在故障定位中的分配等问题仍未得到解决。本文在这三个方面都有所贡献。提出了不平衡系统的多目标二进制整数线性规划模型,该模型仍然适用于输电系统。此外,我们分析了分布式发电机的连接/断开,我们的测试表明,无论发电机连接状态如何,都不需要更改分配。最后,分配方法减少了多重估计问题;因此,基于表的故障定位方法可以通过我们的分配来提高其性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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