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Research on Real-time Simulation and Modeling of High-permeability Distributed Photovoltaic Power Generation Clusters

机译:高磁导率分布式光伏发电集群实时仿真与建模研究

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With a large number of distributed photovoltaic power generation systems connected to the power grid, the penetration rate of new energy power generation is continuously increasing, which brings many challenges to the stability of the power system. This paper builds a high-permeability photovoltaic power generation cluster model based on RT-LAB real-time simulation platform that can reflect the frequency fluctuation of power system. On FPGA high-speed power electronic real-time simulation system, a detailed model of photovoltaic grid-connected inverter is constructed. At the same time, the use of three controlled voltage sources instead of a three-phase bridge inverter is applied to construct an inverter equivalent simplified model. A synchronous generator set model is used to simulate the frequency modulations of the power system. And the ZIP load model is used to simulate the actual load characteristics. Finally, based on RT-LAB real-time simulation platform for verification, the results show that under the requirements for large-scale and high-accuracy simulation, this paper provides a feasible real-time simulation and modeling method.
机译:随着大量分布式光伏发电系统接入电网,新能源发电的普及率不断提高,这给电力系统的稳定性带来了诸多挑战。本文建立了基于RT-LAB实时仿真平台的高渗透率光伏发电集群模型,该模型可以反映电力系统的频率波动。在FPGA高速电力电子实时仿真系统上,构建了光伏并网逆变器的详细模型。同时,使用三个受控电压源代替三相桥式逆变器来构建逆变器等效简化模型。同步发电机组模型用于模拟电力系统的频率调制。 ZIP负载模型用于模拟实际负载特性。最后,基于RT-LAB实时仿真平台进行验证,结果表明,在大规模,高精度仿真的要求下,本文提供了一种可行的实时仿真建模方法。

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