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Low Voltage Ride Through(LVRT) control strategy of grid-connected variable speed Wind Turbine Generator System

机译:并网变速风力发电机组的低压穿越(LVRT)控制策略

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In this paper, a Low Voltage Ride Through (LVRT) control strategy for variable speed full scale Wind Turbine Generator System (WTGS) is proposed. Grid-connected wind power system should satisfy LVRT requirement when grid fault occur, and the variable speed full scale WTGS has advantage of satisfying LVRT compared with the fixed speed WTGS. The proposed LVRT control strategy satisfies not only LVRT requirement but also stabilizing a DC link voltage regardless of reduced DC link capacitance. During the grid faults, especially three phase to ground fault, the grid side converter cannot control the DC link voltage because it is impossible to control grid side power. In this situation, the DC link voltage can be controlled by the generator side inverter using the proposed DC link voltage control scheme. The proposed control scheme can keep the power balance between grid and generator side power in any case of grid fault condition for LVRT. The compliance to Grid Codes has been evaluated by computer simulations. Though the experimental results, it is verified that the proposed method has satisfied the LVRT requirements and DC link voltage control specification simultaneously.
机译:本文提出了一种用于变速满量程风力发电机组(WTGS)的低电压穿越(LVRT)控制策略。并网风电系统在发生电网故障时应满足LVRT要求,与全速WTGS相比,变速满量程WTGS具有满足LVRT的优势。所提出的LVRT控制策略不仅可以满足LVRT要求,而且可以稳定DC链路电压,而与减小DC链路电容无关。在电网故障(尤其是三相接地故障)期间,电网侧转换器无法控制直流母线电压,因为无法控制电网侧电源。在这种情况下,发电机侧逆变器可以使用建议的直流母线电压控制方案来控制直流母线电压。所提出的控制方案可以在LVRT的任何电网故障情况下保持电网与发电机侧功率之间的功率平衡。网格代码的符合性已通过计算机仿真进行了评估。通过实验,验证了该方法同时满足了LVRT要求和直流母线电压控制指标。

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