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Mitigation of Ground Leakage Current of Single-Phase PV Inverter Using Hybrid PWM With Soft Voltage Transition and Nonlinear Output Inductor

机译:用软电压转换和非线性输出电感器使用混合PWM缓解单相PV逆变器的接地漏电流

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摘要

A single-phase transformerless full-bridge photovoltaic grid-tie inverter is presented. It utilizes 1) a virtual ground technique to mitigate ground leakage current, 2) a hybrid pulsewidth modulation (HPWM) scheme to profile the output current and prevent sudden changes in the common-mode voltage, and 3) a nonlinear output inductor to attenuate current ripple around zero crossings and minimize filter size. The HPWM is effectively the same as unipolar PWM (UPWM), but with soft voltage transition modulation introduced around the zero crossings. Apart from low switching losses, the output filter is implemented with a minimum number of components to achieve high attenuation of ripple current. By deriving the switching trajectory, a mathematical model is formulated, and the ground leakage current and the output current with the traditional UPWM and the proposed HPWM schemes are compared. The output current harmonics caused by the nonlinear output inductor is analyzed by the Volterra theory. A 340 W, 380 Vdc/110 V ac, 50 Hz prototype has been built and evaluated.
机译:提供单相变无变压器全桥光伏电网 - 系逆转换器。它利用1)虚拟地面技术来减轻接地漏电流,2)混合脉冲脉冲调制(HPWM)方案来配置输出电流并防止共模电压的突然变化,以及3)非线性输出电感器来衰减电流缠绕过零点并最大限度地减少过滤器尺寸。 HPWM与单极PWM(UPWM)有效地相同,但随着零点过零点引入的软电压过渡调制。除低开关损耗外,输出滤波器通过最小数量的组件实现,以实现高衰减纹波电流。通过导出切换轨迹,配制了数学模型,比较了与传统UPWM的接地漏电流和输出电流和所提出的HPWM方案。由Volterra理论分析由非线性输出电感器引起的输出电流谐波。建立和评估了340 W,380 VDC / 110 V AC,50 Hz原型。

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