Fault Response of Distributed Energy Resources Considering the Requirements of IEEE 1547-2018

Rasel Mahmud, Andy Hoke, D. Narang
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引用次数: 3

Abstract

Inverter-based DER responses to faults on the electric power system are different than those of conventional generators and are often poorly understood. Inverter fault responses are largely software-defined, within physics-based constraints. DERs are regulated by standards and grid codes that also constrain their responses. Though fault response of DERs will vary widely, for any DER following any particular standard, a pattern of fault response can be synthesized by observing that particular standard. In this paper, the recently published IEEE 1547-2018 is examined to explore the general fault response of any DER that follows IEEE 1547-2018. Additionally, an IEEE 1547-2018 compliant inverter model is developed and tested in simulation to find the fault response, and that response is compared with the fault response of a commercial off-the-shelf inverter.
考虑IEEE 1547-2018要求的分布式能源故障响应
基于逆变器的DER对电力系统故障的响应与传统发电机的响应不同,并且通常知之甚少。逆变器故障响应主要是在基于物理的约束下由软件定义的。der受标准和网格代码的约束,这些标准和网格代码也约束了它们的响应。尽管DER的故障响应变化很大,但对于任何遵循特定标准的DER,可以通过观察该特定标准来合成故障响应模式。本文对最近发布的IEEE 1547-2018进行了检查,以探索遵循IEEE 1547-2018的任何DER的一般故障响应。此外,开发了符合IEEE 1547-2018标准的逆变器模型并进行了仿真测试,以找出故障响应,并将该响应与商用逆变器的故障响应进行了比较。
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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