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A novel constraint and non-standard characteristics for optimal over-current relays coordination to enhance microgrid protection scheme

机译:一种新颖的约束和非标准特性,用于最佳的过流继电器协调,以增强微电网保护方案

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摘要

Over the last few decades, the inverse over-current protection scheme has been one of the most common schemes utilised in protecting the distribution networks (DNs). Although over-current relays (OCRs) give an excellent protection in extreme failure situations, but continuous integration of distributed generation (DG) and the multi-looped structure of modern DN has made it difficult for the existing industrial OCR's to secure suitable coordination between the different OCR's. The problem of coordinating over-current schemes in the presence of DG needs a complementary between the optimisation techniques employed and the limitation of the manufactured relays existed in the DN for proper discrimination between OCRs. This study investigates the influence of excessive fault current due to DG penetration on conventional IEC characteristics. A novel constraint had been proposed to be added to the formula of the coordination problem - taking into consideration - the limitation of conventional IEC tripping characteristics utilised in nowadays numerical relays. Furthermore, a new non-standard tripping characteristic is suggested to increase the applicability of the optimisation techniques with the existing OCR's. A benchmark IEC microgrid is implemented in ETAP Package. The genetic algorithm is employed to investigate the effectiveness of the two proposed approaches to the conventional optimisation techniques in different operational modes.
机译:在过去的几十年中,反向过电流保护方案已成为保护配电网络(DN)的最常用方案之一。尽管过电流继电器(OCR)在极端故障情况下提供了出色的保护,但是分布式发电(DG)和现代DN的多环结构的持续集成使现有的工业OCR难以确保在不同的继电器之间进行适当的协调。不同的OCR。在存在DG的情况下协调过电流方案的问题需要在采用的优化技术与DN中存在的制造继电器的限制之间进行补充,以正确区分OCR。这项研究调查了由于DG渗透而导致的过多故障电流对常规IEC特性的影响。已经提出了一种新的约束条件,将其添加到协调问题的公式中-考虑到-当今数字继电器中使用的常规IEC跳闸特性的局限性。此外,建议使用新的非标准跳闸特性,以提高优化技术与现有OCR的适用性。在ETAP软件包中实施了基准IEC微电网。遗传算法用于研究在不同的操作模式下两种建议的方法对常规优化技术的有效性。

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