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Research on the parallel technique for the direct-drive wind power converter

机译:直驱风电变流器并联技术研究

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At present, the parallel back-to-back PWM converters which adopt the parallel mode of sharing DC bus are used in megawatt-level high-power wind generation system. However, there will be circular current when the switch states of two parallel converters are not the same and this circular current will increase system wastage and decrease system efficiency. This paper adopts a novel control strategy that adds a zero sequence circuiting current (ZSCC) control loop to the total output current loop and ameliorates PWM pulse drive method of parallel converters. This control strategy assures that the on-off times of two parallel converters are totally the same and consequently the impact of circular current will be eliminate. The simulations and experiments show that the converter can satisfy the system demands of reliability, circular current control and the hardware implementation.
机译:目前,兆瓦级大功率风力发电系统中采用了并行共享直流母线的并行背靠背PWM转换器。但是,当两个并行转换器的开关状态不相同时,将存在循环电流,并且该循环电流会增加系统浪费并降低系统效率。本文采用一种新颖的控制策略,该方法将零序电路电流(ZSCC)控制环路添加到总输出电流环路,并改善了并行转换器的PWM脉冲驱动方法。这种控制策略可确保两个并行转换器的通断时间完全相同,从而消除了循环电流的影响。仿真和实验表明,该转换器能够满足系统对可靠性,循环电流控制和硬件实现的要求。

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