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Low voltage ride-through test for two-level photovoltaic grid-connected inverter based on RT-LAB

机译:基于RT-Lab的两级光伏电网连接逆变器的低电压骑行试验

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The low voltage ride-through (LVRT) grid-connected performance test of the controller of two-level photovoltaic grid-connected inverter is studied by RT-LAB hardware-in-the-loop (HIL) simulation technology, and a HIL modeling and testing scheme is presented for photovoltaic grid-connected inverter LVRT performance. First, a HIL LVRT test platform, which contains PV array model, voltage sag generator model and photovoltaic inverter power circuit model, is constructed by RT-LAB simulator. Furthermore, a LVRT control strategy under the asymmetric sag fault of grid voltage is designed. Finally, the LVRT HIL simulation test for a 500kW photovoltaic grid-connected inverter using the LVRT control strategy is done in different sag depths and different conditions by RT-LAB simulator, LVRT simulation test results show that the HIL modeling and testing scheme could simulate the on-site testing platform and the proposed control strategy has good dynamic, static characteristics in LVRT process.
机译:通过RT-Lab硬件in-Loop(HIL)仿真技术研究了两级光伏电网连接逆变器控制器的低电压骑行(LVRT)网格连接性能测试,以及HIL建模和HIL型号提出了用于光伏电网连接逆变器LVRT性能的测试方案。首先,RT-Lab Simulator构建了包含光伏阵列模型,电压凹槽模型和光伏变频器电路模型的HIL LVRT测试平台。此外,设计了在网格电压不对称下垂故障下的LVRT控制策略。最后,使用LVRT控制策略的500kW光伏电网连接逆变器的LVRT HIL仿真试验在不同的下垂深度和RT-Lab Simulator的不同条件下进行,LVRT仿真测试结果表明,HIL建模和测试方案可以模拟现场测试平台和所提出的控制策略在LVRT过程中具有良好的动态,静态特性。

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