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A low voltage ride-through control strategy of full power converter wind turbine system under balance grid fault

机译:平衡电网故障下全功率变流器风力发电机组的低压穿越控制策略

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When the full power converter of wind generation system under the symmetry fault, for the first time by calculating the relationship between the current wind speed, rated wind speed, the drop depth of grid voltage and converter security to determine whether need for protection. If it need protect, precisely calculate the extra energy and increased by DC side Crowbar circuit of energy storage device, to across the symmetrical fault under the dip of grid voltage. In the period of the fault, according to the depth dip of the grid voltage injections reactive power to improve the voltage recovery. Simulation results show that at any wind velocity when the full power converter system of the wind generation under symmetrical fault, it can maintain the voltage of DC side constantly, according to the depth dip of the grid voltage injects reactive power to the net and it can achieve a low voltage ride-through.
机译:当风力发电系统的全功率变流器在对称故障下时,首次通过计算当前风速,额定风速,电网电压下降深度与变流器安全性之间的关系来确定是否需要保护。如果需要保护,则通过储能装置的直流侧Crowbar电路精确计算出额外的能量并增加到电网电压骤降下的对称故障。在故障期间,根据电网的深度骤降注入无功功率以提高电压恢复能力。仿真结果表明,在任何风速下,对称故障情况下的风力发电全功率变流器系统都能稳定地保持直流侧的电压,根据电网电压的深度骤降向电网注入无功功率,并能够实现低电压穿越。

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