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Practical Challenges of Inverse and Definite-Time Overcurrent Protection Coordination in Modern Industrial and Commercial Power Distribution System

机译:现代工业配电系统中逆和明确时间过流保护协调的实际挑战

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摘要

The characteristics of an overcurrent relay (OCR) in protection coordination are determined by adjusting the current and time delay function. This characteristic is adjusted once, fixed, and expected to overcome any disturbances in the system, which raises the risk of incorrect operation of the protection system, such as an overlapping trip or the incapability to limit the current exposure in the protected equipment. This article summarizes different efforts to overcome the modern challenges of overcurrent protection coordination (OCPC) in low or medium voltage industrial and commercial distribution systems. A brief background is introduced from a general perspective and then specifically describes in detail the problem of equipment coordination with a thorough link among mathematical concepts and fundamentals in practice. The operation challenges and ideas to avoid incorrect performance, under normal operation, are discussed. Finally, the article proposes a new optimization method based on the combination of the firefly algorithm and target remedy to overcome such challenges. The optimization considers the combination of inverse-time (ANSI 51) and definite-time (ANSI 50) function in OCR. The method is described and validated in the IEEE 242.2001 to meet the existing regulation of protection coordination. By assessing the critical cases, this article is expected to enhance the OCPC under different fault scenarios with complex coordination of time-current curves.
机译:通过调整电流和时间延迟函数来确定保护协调中的过电力继电器(OCR)的特性。这种特性进行了一次,固定和预期克服系统中的任何干扰,这提高了保护系统的不正确操作的风险,例如重叠行程或无法限制受保护设备中的电流曝光。本文总结了克服低压工业和商业配送系统中过流保护协调(OCPC)的现代挑战的不同努力。从一般的角度介绍了一个简短的背景,然后具体地描述了在实践中与数学概念和基本面之间的彻底联系方式的解决方案协调问题。讨论了在正常运行中避免不正确性能的操作挑战和思路。最后,文章提出了一种基于萤火虫算法和目标补救措施的组合的新优化方法,以克服这些挑战。优化考虑了OCR中的逆时间(ANSI 51)和明确时间(ANSI 50)函数的组合。在IEEE 242.2001中描述并验证了该方法,以满足保护协调的现有调节。通过评估关键案例,预计本文将在不同的故障方案下增强OCPC,具有复杂的时间电流曲线的协调。

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