An experimental research on comparison of two kinds of voltage sag generators

Wu Jian, Hu Zhihao, X. Dianguo, Hua Ke
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引用次数: 2

Abstract

With the extensive use of power quality compensator and wind power generation system, various voltage sag generators (VSG) have been designed to achieve the performance test of power quality compensator and satisfy the requirement of low voltage ride through (LVRT) experiment of wind power system. Two methods to simulate the sag of grid voltage are proposed, one is to use autotransformer regulator and switches, and the other one is based on the topology of power electronic device. Both of them have been analyzed on their work principles and topology in detail. Then, on the basis of the result, experimental prototype is built for functional verification. Experimental results make out that the autotransformer regulator based VSG has simple structure, but it fails to achieve the phase angle jump and needs electronic switches to take place of contactor to avoid the control delay; the power electronic based VSG is more flexible that it can produce various voltage faults with controllable amplitude, phase and duration time. Moreover, the power electronic based VSG has a transient process with smooth transition.
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对两种电压暂降发电机进行了对比试验研究
随着电能质量补偿器和风力发电系统的广泛应用,为了实现电能质量补偿器的性能测试,满足风电系统低压穿越试验的要求,设计了各种电压暂降发电机(VSG)。提出了两种模拟电网电压跌落的方法,一种是利用自耦变压器稳压器和开关,另一种是基于电力电子器件的拓扑结构。详细分析了它们的工作原理和拓扑结构。在此基础上,建立了实验样机进行功能验证。实验结果表明,基于VSG的自耦变压器稳压器结构简单,但无法实现相角跳变,需要用电子开关代替接触器来避免控制延迟;基于电力电子的VSG具有较强的灵活性,可以产生幅度、相位和持续时间可控的各种电压故障。此外,基于电力电子的VSG具有平稳过渡的暂态过程。
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