Overview of Distribution System Reliability Optimization Against Lightning

Jia-Wen Tang, Chin-Leong Wooi, Wen-Shan Tan
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Abstract

The reliability of the distribution system relies on the occurrence of lightning phenomena, which can significantly affect the distribution of electricity and result in power service disruptions. Therefore, ensuring the reliability of the distribution system is an ongoing challenge that necessitates continuous research for optimal solutions. Researchers have always developed solutions that are always up to date by leveraging advancements in mathematics, engineering technology, and management strategies. This paper presents a comprehensive summary and discussion of various optimization models for enhancing system reliability. It offers an overview of commonly employed mathematical programming techniques and algorithms for Lightning Protection Systems (LPSs), while also highlighting the influence of lightning phenomena on these solutions. The focus of this paper is to present the engineering aspects behind the development of modern LPSs. It encompasses historical reliability data, technical limitations, and economic considerations. By utilizing operations research and optimization theory, researchers have been able to devise more effective approaches for addressing reliability issues, even in highly intricate systems across different domains. Technological advancements have prompted researchers to adopt a new perspective on solving reliability problems, based on practical engineering requirements. In conclusion, the continuous progress in mathematics, engineering technology, and management approaches has enabled researchers to tackle the challenges associated with distribution system reliability. This paper serves as a valuable resource, providing insights into the development of modern LPSs and offering guidance on optimizing system reliability in various practical engineering scenarios.
配电系统防雷可靠性优化概述
配电系统的可靠性取决于雷电现象的发生,雷电现象会严重影响配电,导致电力服务中断。因此,确保配电系统的可靠性是一项持续的挑战,需要不断研究最佳解决方案。研究人员一直在利用数学、工程技术和管理策略方面的进步,开发出与时俱进的解决方案。本文全面总结和讨论了提高系统可靠性的各种优化模型。它概述了防雷系统 (LPS) 常用的数学编程技术和算法,同时还强调了雷电现象对这些解决方案的影响。本文的重点是介绍现代 LPS 开发背后的工程方面。它包括历史可靠性数据、技术限制和经济考虑因素。通过利用运筹学和优化理论,研究人员能够设计出更有效的方法来解决可靠性问题,即使是在不同领域高度复杂的系统中。技术进步促使研究人员根据实际工程要求,采用新的视角来解决可靠性问题。总之,数学、工程技术和管理方法的不断进步使研究人员能够应对与配电系统可靠性相关的挑战。本文是一份宝贵的资料,为现代 LPS 的发展提供了见解,并为在各种实际工程场景中优化系统可靠性提供了指导。
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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CiteScore
1.30
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