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Dynamic analysis of DC–DC converter internal to an offshore wind farm

机译:海上风电场内部DC-DC转换器的动态分析

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This study investigates the feasibility of integrating a single-switch active rectifier layout in an offshore wind farm. The proposed active rectifier topology consists of cascade connection of a diode-rectifier and a DC-DC boost converter. A DC collection grid is considered inside the wind farm, which supplies power to a land grid. Each wind conversion units within the DC collection grid includes a turbine, a generator, and an active rectifier. The DC-DC stage of the active rectifier allows regulating the frequency of generator, controlling the DC voltage to follow the reference signal, mitigating the distortion or ripple in the current signal, and maintaining the fault-ride through capability of the wind farm. The AC output signal from the wind-turbine-generators is converted to DC signal through a non-controlled full-bridge diode rectifier and a controlled DC-DC converter. The dynamic model of the DC-DC boost converter cascaded with the diode-rectifier is derived; and the contribution of pulse width modulation (PWM)-controller to the mitigation of signal variations is evaluated. The results prove consistency of the closed loop PWM-controller, which reduces significantly the gain of disturbances. The results are presented in the form of small-signal transfer functions and simulated using MATLAB software.
机译:这项研究调查了在海上风电场中整合单开关有源整流器布局的可行性。提出的有源整流器拓扑结构包括一个二极管整流器和一个DC-DC升压转换器的级联。在风力发电场内部考虑了一个DC收集电网,该电网为陆地电网供电。 DC收集电网内的每个风力转换单元均包括涡轮机,发电机和有源整流器。有源整流器的DC-DC级允许调节发电机的频率,控制DC电压跟随参考信号,减轻电流信号中的失真或波动,并通过风电场的能力维持故障排除。风力发电机的交流输出信号通过非受控全桥二极管整流器和受控DC-DC转换器转换为DC信号。推导了与二极管整流器级联的DC-DC升压转换器的动态模型。并评估了脉宽调制(PWM)控制器对减轻信号变化的贡献。结果证明了闭环PWM控制器的一致性,从而显着降低了干扰增益。结果以小信号传递函数的形式呈现,并使用MATLAB软件进行仿真。

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