A new wind turbine generator / battery energy storage utility interface converter topology with medium-frequency transformer

H. Krishnamoorthy, D. Rana, P. Enjeti
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引用次数: 13

Abstract

In this paper, a new medium-voltage (MV) wind turbine generator (WTG) - energy storage grid interface converter topology with medium-frequency (MF) link transformer isolation is introduced. The system forms a 3-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 battery energy storage side respectively after power conversion. The power generated by WTG is transferred to the MF transformer secondary windings through a 3-phase PWM rectifier and a 3-phase PWM inverter, whereas the power transfer between the energy storage and the tertiary winding occurs through a 3-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 3-port topology results in smaller converter weight/volume. Moreover, the control can effectively handle voltage sags/swells and provide low voltage ride through (LVRT) capability without significant change in the topology. Simulation waveforms along with preliminary experimental results are discussed in this paper.
一种带中频变压器的新型风力发电机/蓄电池储能实用接口变换器拓扑结构
本文介绍了一种新型中压(MV)风力发电机组——具有中频(MF)链路变压器隔离的储能电网接口变换器拓扑结构。该系统形成一个3端口网络,其中几个串联堆叠的AC-AC转换器将低频(50/60 Hz)公用MV通过中频方波调制成中频(0.4至2 kHz)交流电压。这个电压然后被馈送到中频变压器初级绕组。二次绕组和三次绕组在功率转换后分别与WTG侧和电池储能侧接口。WTG产生的功率通过三相PWM整流器和三相PWM逆变器传输到MF变压器二次绕组,而储能与三次绕组之间的功率传输则通过三相PWM逆变器进行。结果表明,采用PI和DQ控制策略可以控制电网正弦电流、电池电流和WTG输出电流的良好质量。因此,所提出的基于3端口拓扑的中频变压器导致更小的转换器重量/体积。此外,该控制器可以有效地处理电压下降/膨胀,并在不显著改变拓扑结构的情况下提供低电压穿越(LVRT)能力。本文讨论了模拟波形和初步实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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