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Fault analysis of solar photovoltaic penetrated distribution systems including overcurrent relays in presence of fluctuations

机译:存在波动的太阳能光伏渗透配电系统(包括过电流继电器)的故障分析

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摘要

Intermittence from solar photovoltaic (PV) source can deteriorate overcurrent relays (OCRs) response to fault. This paper proposes a method for fault analysis with OCRs consideration to discuss relays faults currents fluctuations in time against PV fluctuations. The simulated PV fluctuations are short time dynamic high and low irradiations fluctuations and PV connection and disconnection based PV-dominated feeders. Two distribution systems (DSs) based accurate PV systems are modeled separately with and without Battery Energy Storage System (BESS) for the purpose of proposed method. Series and parallels PV modules are arranged to model accurate 6.5 kV PV farm power. Two level three-phase voltage source inverter (VSI), DC-DC boost converter and LCL filter are applied for each PV system. Precise detailed control strategies are implemented in PSCAD software. This paper proposed method complies with congestion which is frequently avoided in literature. The results discussions based proposed method clarified PV fluctuations scenarios impacts on OCRs dynamic fault currents profiles in presence and absence of BESS and clearly revealed and argued related important findings. In addition, OCRs performance is shortly analyzed based particle swarm optimization (PSO) algorithm efficiently coded in Matlab. The obtained results could be very profitable to power system relaying operators to handle protection challenges with PV power fluctuations.
机译:太阳能光伏(PV)源的间歇可能会使对故障的过电流继电器(OCR)响应变差。本文提出了一种考虑OCR的故障分析方法,以讨论继电器故障电流随PV波动的时间波动。模拟的PV波动是短时动态的高和低辐照波动以及基于PV连接和断开的以PV为主的馈线。出于所提出的方法的目的,分别基于带有和不带有电池能量存储系统(BESS)的两个基于配电系统(DSs)的精确PV系统进行建模。串联和并联光伏模块的布置可对6.5 kV光伏电站的精确功率进行建模。每个光伏系统均采用两级三相电压源逆变器(VSI),DC-DC升压转换器和LCL滤波器。精确的详细控制策略在PSCAD软件中实现。本文提出的方法符合拥塞,这在文献中经常被避免。在结果讨论的基础上,提出的方法阐明了存在和不存在BESS的情况下,PV波动情形对OCR动态故障电流分布的影响,并明确揭示和争论了相关的重要发现。此外,基于Matlab中有效编码的粒子群优化(PSO)算法对OCR的性能进行了简短的分析。获得的结果对于电力系统中继运营商应对光伏功率波动带来的保护挑战可能非常有利。

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