Protection of Microgrids

J. Ekanayake
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Abstract

The concept of microgrids goes back to the early years of the electricity industry although the systems then were not formally called microgrids. Today, two types of microgrids can be seen: independent and grid connected. The protection requirement of these two types differs as the protection needs of an independent microgrid are intended for protecting components and systems within the microgrid, whereas a grid connected microgrid demands both internal and external protection. The first part of this chapter is dedicated to independent microgrids. How protection devices such as residual current circuit breakers, miniature and moulded case circuit breakers, and surge protective devices should be selected for an example microgrid is discussed while referring to the relevant standards. In the next section, the protection of a grid connected microgrid is discussed. Particularly, micro-source protection, microgrid protection, loss of mains protection and fault ride-through requirements are discussed while referring to two commonly used distributed generator connection codes. An example with simulations carried out in the IPSA simulation platform was used to explain different protection requirements and calculation procedures. Finally, grounding requirements are discussed while referring to different interfacing transformer connections and voltage source inverter connections.
微电网保护
微电网的概念可以追溯到电力工业的早期,尽管当时的系统还没有被正式称为微电网。今天,我们可以看到两种类型的微电网:独立微电网和并网微电网。这两种类型的保护要求不同,因为独立微电网的保护需求旨在保护微电网内的组件和系统,而并网微电网则需要内部和外部保护。本章的第一部分专门讨论独立微电网。在参考相关标准的基础上,对某微电网实例如何选择漏电断路器、微型及塑壳断路器、浪涌保护装置等保护装置进行了探讨。在下一节中,将讨论并网微电网的保护。结合两种常用的分布式发电机接线规范,重点讨论了微源保护、微网保护、市电损耗保护和故障穿越要求。以IPSA仿真平台为例,说明了不同的防护要求和计算步骤。最后,参考不同的接口变压器连接方式和电压源逆变器连接方式,讨论了接地要求。
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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