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Real Time Simulation in a Distribution System Including PV Inverter and Voltage Regulator: Voltage Impact Analysis

机译:配电系统中的实时仿真,包括光伏逆变器和电压调节器:电压冲击分析

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This paper presents an analysis of the voltage profile in a distribution system with high photovoltaic (PV) penetration rate. The system used was the IEEE 13 Node Test Feeder with some modifications. The system was modelled in RSCAD software and simulated using Real-Time Digital Power System Simulator (RTDS). PV inverters were modelled with their respective control loops in the software mentioned above, performing the simulations aimed to analyze the voltage variation of the load center, considering the impact of a Voltage Regulator (VR). The VR control was embedded in Digital Signal Processing and Control Engineering (dSPACE), which communicates with RTDS performing a Hardware In the Loop (HIL) simulation. The PV inverter control was modelled and implemented with details. Results show that the effectiveness of the VR control depends on the length of the distribution lines. In this work, conclusions present that for medium length lines, standard VR control cannot limit the voltage profile between the allowed values.
机译:本文介绍了具有高光伏(PV)渗透率的分配系统中的电压曲线的分析。使用的系统是IEEE 13节点测试馈线,具有一些修改。该系统在RSCAD软件中建模并使用实时数字电源系统模拟器(RTD)进行模拟。考虑到电压调节器(VR)的冲击,PV逆变器用它们各自的控制回路进行了模拟,其进行了旨在分析负载中心的电压变化的模拟。 VR控制嵌入在数字信号处理和控制工程(DSPACE)中,其与执行循环(HIL)模拟中的硬件进行通信。 PV逆变器控制被建模和实施细节。结果表明,VR控制的有效性取决于分配线的长度。在这项工作中,结论存在,对于中长线,标准VR控制不能限制允许值之间的电压分布。

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