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A modified Z-source inverter topology for stable operation of transformerless photovoltaic systems with reduced leakage currents

机译:改进的Z源逆变器拓扑结构,可在无变压器光伏系统稳定运行的同时降低泄漏电流

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Three-phase Z-source inverters are an interesting solution for connecting transformerless photovoltaic systems to the grid, due to its boost characteristic. Nevertheless, the traditional topology and its pulse-width modulation techniques generate undesired leakage currents in transformerless systems. Moreover, a recent study showed that, under certain conditions, the Z-source inverter presents stability issues. Therefore, this paper proposes a modified Z-source inverter topology and a particular pulse-width modulation that allow the three-phase Z-source inverter transformerless photovoltaic system to operate always in the stability range with very low leakage currents. A comparative study between the proposed system and the traditional dc-dc boost converter cascaded with a voltage source inverter is carried out, in order to highlight the major features of both solutions. Furthermore, simulation results of the three-phase proposed Z-source inverter topology connected to a RL load are obtained to validate the theoretical models.
机译:三相Z源逆变器因其升压特性而成为将无变压器光伏系统连接到电网的有趣解决方案。然而,传统的拓扑结构及其脉宽调制技术会在无变压器系统中产生不希望的泄漏电流。此外,最近的一项研究表明,在某些条件下,Z源逆变器会带来稳定性问题。因此,本文提出了一种改进的Z源逆变器拓扑结构和特定的脉冲宽度调制,该调制器可使三相Z源逆变器无变压器光伏系统始终在具有非常低泄漏电流的稳定范围内运行。为了突出这两种解决方案的主要特点,对所提出的系统与级联电压源逆变器的传统DC-DC升压转换器进行了比较研究。此外,获得了与RL负载连接的三相提议的Z源逆变器拓扑的仿真结果,以验证理论模型。

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