A Novel SVPWM Technique for Leakage Current Reduction and Neutral-Point Voltage Balance in Transformerless Three-Level Inverters

Jilang Qiu, Yingjie He, Longyu Xu, Q. Jiao
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Abstract

In photovoltaic (PV) systems, transformerless three-level inverters have been widely used because of the simple structure and high efficiency. However, in addition to the inherent neutral-point voltage unbalance problem in three-level inverters, leakage current issues also should be carefully regulated in transformerless systems. But conventional common-mode voltage (CMV) reduction methods cannot well deal with the two problems. According to the principle of generation of leakage current, an improved large-medium-small-vector modulation (ILMSVM) method is proposed in this paper based on the LMP/NSVM method. Unlike conventional CMV suppression method, small vectors with high CMV are also used in the proposed method to control the neutral-point voltage while leakage current is well suppressed. Variation of CMV is kept within 1/6Udc in each switching cycle. And leakage current spikes are also avoided between the switching sequences. Compared with LMP/NSVM method, the neutralpoint voltage is adjusted faster and leakage current spikes is avoided in applying the ILMSVM method. Compared with conventional SVPWM method, ILMSVM method has little disadvantages in neutral point voltage control but can well suppress the leakage current. Effectiveness of the proposed method is verified by comparing the results with conventional SVPMW method and LMP/NSMV method in simulation.
无变压器三电平逆变器泄漏电流减小和中性点电压平衡的SVPWM新技术
在光伏系统中,无变压器三电平逆变器因其结构简单、效率高而得到广泛应用。然而,除了三电平逆变器固有的中性点电压不平衡问题外,在无变压器系统中也应仔细调节漏电流问题。但传统的共模电压降低方法不能很好地解决这两个问题。根据泄漏电流的产生原理,在LMP/NSVM方法的基础上,提出了一种改进的大、中、小矢量调制(ILMSVM)方法。与传统的CMV抑制方法不同,该方法还采用了具有高CMV的小矢量来控制中性点电压,同时很好地抑制了泄漏电流。CMV在每个切换周期内的变化保持在1/6Udc以内。同时也避免了开关序列间的漏电流尖峰。与LMP/NSVM方法相比,ILMSVM方法可以更快地调节中性点电压,避免了漏电流尖峰。与传统的SVPWM方法相比,ILMSVM方法在中性点电压控制方面几乎没有缺点,但可以很好地抑制泄漏电流。仿真结果与传统的SVPMW方法和LMP/NSMV方法进行了比较,验证了该方法的有效性。
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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