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Modeling of Photovoltaic Grid-connected Inverter and Low Voltage Ride-Through Control

机译:光伏并网逆变器建模与低压穿越控制

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Low voltage ride through (LVRT) requires distributed photovoltaic power generation to continue grid-connected operation in the event of a grid drop, and to provide active or reactive power support for the grid, which can help the grid voltage and grid frequency to remain stable. Aiming at the high-precision test of the control system of grid-connected photovoltaic inverter with LCL filter, especially in the simulation environment from real-time historical data of irradiation, weather and grid condition, this paper proposes a cyber-physical system (CPS) based on hardware-in-the-loop (HIL) method for LVRT test. This paper firstly analyzes the requirements of LVRT, gives the selection range of LCL filter parameters, the design of phase-locked loop design, and the control strategies of low voltage ride through. Then it establishes and simulates the grid-connected inverter model and uses a HIL simulator device to build a CPS control system test platform. Finally, The HIL test results are compared with similar software simulation research results to verify the effect.
机译:低压穿越(LVRT)要求分布式光伏发电以在发生电网故障的情况下继续并网运行,并为电网提供有功或无功功率支持,这可以帮助电网电压和电网频率保持稳定。针对具有LCL滤波器的并网光伏逆变器控制系统的高精度测试,特别是在模拟环境中,根据辐射,天气和电网状况的实时历史数据,提出了一种网络物理系统(CPS)。 )基于LVRT测试的硬件在环(HIL)方法。本文首先分析了LVRT的要求,给出了LCL滤波器参数的选择范围,锁相环设计的设计以及低压穿越的控制策略。然后建立并仿真并网逆变器模型,并使用HIL仿真器设备构建CPS控制系统测试平台。最后,将HIL测试结果与类似的软件仿真研究结果进行比较,以验证效果。

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