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首页> 外文期刊>IEEE Transactions on Power Electronics >Wind Turbine Generator–Battery Energy Storage Utility Interface Converter Topology With Medium-Frequency Transformer Link
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Wind Turbine Generator–Battery Energy Storage Utility Interface Converter Topology With Medium-Frequency Transformer Link

机译:具有中频变压器链路的风力发电机-电池储能实用程序接口转换器拓扑

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A medium-voltage (MV) wind turbine generator (WTG)–battery energy storage (BESS) grid interface converter topology with medium-frequency (MF) transformer isolation is introduced in this paper. The system forms a three-port network in which several series stacked ac–ac converters transform the low-frequency (50/60 Hz) utility MV into MF (0.4 to 2 kHz) ac voltage by modulating it with MF square wave. This voltage is then fed to the MF transformer primary windings. The secondary and tertiary windings interface with the WTG side and the BESS side, respectively, after power conversion. The power generated by WTG is transferred to the MF transformer secondary windings through a three-phase pulse width modulation (PWM) rectifier and a three-phase PWM inverter, whereas the power transfer between the BESS and the tertiary winding occurs through a three-phase PWM inverter. It is shown that the utility grid sinusoidal currents, the battery current, and the WTG output currents can be controlled to be of good quality using PI and DQ control strategies. Thus, the proposed MF transformer-based three-port topology results in smaller converter weight/volume. Moreover, the control can handle voltage sags/swells and provide low voltage ride-through capability. Simulation waveforms along with experimental results are shown as proof of concept.
机译:本文介绍了具有中频(MF)变压器隔离的中压(MV)风力涡轮发电机(WTG)-电池储能(BESS)电网接口转换器拓扑。该系统形成一个三端口网络,其中几个串联的ac-ac转换器通过使用MF方波对其进行调制,将低频(50/60 Hz)公用事业MV转换为MF(0.4至2 kHz)交流电压。然后,该电压被馈送到MF变压器的初级绕组。功率转换后,次级绕组和三次绕组分别与WTG侧和BESS侧连接。 WTG产生的功率通过三相脉冲宽度调制(PWM)整流器和三相PWM逆变器传递到MF变压器的次级绕组,而BESS和三次绕组之间的功率传递则通过三相进行PWM逆变器。结果表明,使用PI和DQ控制策略可以将公用电网的正弦电流,电池电流和WTG输出电流控制为高质量。因此,提出的基于MF变压器的三端口拓扑结构可减小转换器的重量/体积。此外,该控件可以处理电压骤降/骤升并提供低电压穿越能力。仿真波形和实验结果均显示为概念证明。

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