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Generalized distance-based protection design for DG integrated MV radial distribution networks-Part Ⅰ: Guidelines

机译:DG集成MV径向配电网络的基于距离的广义保护设计-第一部分:准则

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摘要

The critical advantages of distance protection render this protection principle a promising option for distribution systems, especially in light of integrating distributed generation. The first part of this two-paper series proposes complete guidelines for designing directly applicable and economically feasible distance protection schemes for medium-voltage radial distribution systems with distributed generation. These guidelines intend to take account of distributed generation, since they are designed to deal with its effect in terms of both directionality (bi-directional flow of short-circuit current) and protection dependability (intermediate infeed effect). Moreover, they are designed to address the concurrent effect of any other critical factor related to distance relay operation (e.g. fault resistance and zero-sequence compensation), as well as the coordination of distance relays with lateral protection means. The procedure is systematic and independent of specific distributed generation conditions, while, it has to be performed only once for a particular distribution system. Economic feasibility of the designed protection scheme is preserved, as it is intended to install the minimum number of distance relays, without using communication means. Furthermore, simplicity and direct applicability is ensured, as the proposed guidelines are implementable using existing distance relay technology.
机译:距离保护的关键优势使该保护原理成为配电系统的有前途的选择,尤其是考虑到分布式发电的集成。此两篇系列文章的第一部分提出了用于设计直接适用且经济可行的分布式发电的中压径向配电系统距离保护方案的完整指南。这些准则旨在考虑分布式发电,因为它们旨在从方向性(短路电流的双向流动)和保护可靠性(中间馈电效应)两个方面来处理其影响。此外,它们旨在解决与距离继电器操作相关的任何其他关键因素(例如,故障电阻和零序补偿)以及距离继电器与侧向保护装置的配合所产生的同时影响。该过程是系统的,并且与特定的分布式发电条件无关,而对于特定的分布式系统,该过程仅需执行一次。设计的保护方案的经济可行性得以保留,因为它旨在在不使用通信手段的情况下安装最少数量的距离继电器。此外,由于可以使用现有的距离中继技术来实施建议的准则,因此可以确保简单性和直接适用性。

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