考虑隐性故障和元件老化影响下负荷增长的遥控开关配电网可靠性增强

Q3 Engineering
Umesh Agarwal, Naveen Jain, M. Kumawat
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引用次数: 2

摘要

在过去的十年中,由于传统的配电网不够智能,无法满足日益增长的对可靠电力供应的需求,自动化配电网变得越来越重要。由于配电网是电力公司与用户之间最不可靠的唯一纽带,因此提高配电网的可靠性至关重要。远程控制开关(RCS)是提高系统可靠性的可行选择。它缩短了中断周期,这也最小化了预期的中断成本和未服务的能源量。利用贪婪搜索算法,将现有的可靠性评估技术扩展到配电网络中的rcs。在成本折衷的情况下,对rcs的最佳位置和数量进行了评估。同时考虑了负荷增长对系统可靠性指标的影响、年限对设备故障率的影响以及熔断器的隐性故障率。罗伊比林顿测试系统的配电网连接在总线2和总线5已被用来测试所建议的方法的有效性。结果表明,RCS的有效部署显著提高了径向配电网的可靠性指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability enhancement of distribution networks with remote-controlled switches considering load growth under the effects of hidden failures and component aging
Over the last decade, automated distribution networks have grown in importance since traditional distribution networks are insufficiently intelligent to meet the growing need for reliable electricity supplies. Because the distribution network is the least reliable and the sole link between the utility and its customers, it is critical to improve its reliability. The remote-controlled switch (RCS) is a viable choice for boosting system reliability. It shortens the interruption period, which also minimizes the expected interruption cost and the amount of energy not served. Using the greedy search algorithm, this research expands the current reliability evaluation technique to include RCSs in distribution networks. The optimal location and numbers of RCSs have been evaluated with compromised cost. This study simultaneously takes into account the effects of load growth on system reliability indices, the impact of age on equipment failure rates and the hidden failure rate of fuses. The Roy Billinton test system's distribution network connected at bus 2 and bus 5 has been used to test the effectiveness of the suggested approach. The outcomes demonstrate that effective RCS deployment improves the radial distribution network's reliability indices significantly.
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来源期刊
AIMS Electronics and Electrical Engineering
AIMS Electronics and Electrical Engineering Engineering-Control and Systems Engineering
CiteScore
2.40
自引率
0.00%
发文量
19
审稿时长
8 weeks
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