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Impact of non-simultaneous P/f and Q/V grid code requirements on PV inverters on unintentional islanding operation in distribution network

机译:P / f和Q / V电网代码要求不同对光伏逆变器的影响对配电网中的意外孤岛运行

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摘要

The analysis of unintentional islanding in distribution grids with a large penetration of renewable energy sources is of increasing interest due to the recently introduced requirements of P/f and Q/V supporting capabilities of Distributed Energy Resources (DERs) and the wider frequency and voltage ranges, DERs should be able to operate with, before protection tripping. DER anti-islanding protections, if present, may fail to detect this grid transition and so uncontrolled islanding operation may appear. Since this operating mode may be dangerous for the electric network operation and may cause damages for the grid equipment, in this paper the increase of its risk due to P/f and Q/V droop characteristics of generators is addressed. Analytic results are initially derived for the steady-state unintentional islanding operation and then they are validated on a laboratory-scale grid setup. The proposed investigation will show that the risk of permanent unintentional islanding increases introducing P/f or Q/V droop regulation and that such risk is maximum including both the P/f and Q/V droop regulations, rather than only one of them.
机译:由于最近引入了对分布式能源(DER)的P / f和Q / V支持能力的要求以及更宽的频率和电压范围,对具有大量可再生能源渗透的配电网中的无意孤岛的分析越来越引起人们的关注。在保护跳闸之前,DER应该能够工作。 DER防孤岛保护(如果存在)可能无法检测到该电网过渡,因此可能出现不受控制的孤岛运行。由于此操作模式可能会对电网运行造成危险,并可能损坏电网设备,因此本文针对由于发电机的P / f和Q / V下降特性而导致的风险增加。首先得出稳态无意孤岛操作的分析结果,然后在实验室规模的网格设置中对其进行验证。拟议的调查将表明,引入P / f或Q / V下垂规定会导致永久性无意孤岛的风险增加,并且这种风险最大,包括P / f和Q / V下垂规定,而不只是其中之一。

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