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A Quasi-Unipolar SPWM Full-Bridge Transformerless PV Grid-Connected Inverter with Constant Common-Mode Voltage

机译:具有恒定共模电压的准单极SPWM全桥无变压器PV并网逆变器

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摘要

The unipolar sinusoidal pulsewidth modulation (SPWM) full-bridge transformerless photovoltaic inverter with ac bypass brings low conduction loss and low leakage current. In order to better eliminate the leakage current induced by the common-mode voltage, the clamping technology can be adopted to hold the common-mode voltage on a constant value in the freewheeling period. A full-bridge inverter topology with constant common-mode voltage (FB-CCV) has been derived and proposed in this paper, two unidirectional freewheeling branches are added into the ac side of the FB-CCV, and the split structure of the proposed freewheeling branches does not lead itself to the reverse-recovery issues for the freewheeling power switches and as such superjunction MOSFETs can be utilized without any efficiency penalty. The passive clamping branches consist of a capacitor divider and two diodes, is added into the dc side of the FB-CCV, therefore, the weakness of active damping branch has been overcome, and the better clamping performance has been achieved in the freewheeling period. In the dead time between the main switches and the freewheeling switches, the antiparallel diodes of diagonal main switches of the FB-CCV form the freewheeling path to clamp the common-mode voltage at a constant value, and a quasi-unipolar SPWM strategy is presented. The operation principle, differential-mode, and common-mode characteristics of the FB-CCV, Heric, H6, and HB-ZVR topologies are analyzed and compared in detail. Finally, the viability of the FB-CCV is verified by a universal prototype inverter rated at 5 kW.
机译:具有交流旁路的单极性正弦脉宽调制(SPWM)全桥无变压器光伏逆变器具有低传导损耗和低泄漏电流。为了更好地消除共模电压引起的漏电流,可以采用钳位技术将续流期间的共模电压保持在恒定值。本文推导并提出了一种具有恒定共模电压(FB-CCV)的全桥逆变器拓扑,在FB-CCV的ac侧增加了两个单向续流分支,并提出了续流的分流结构支路不会导致续流功率开关的反向恢复问题,因此可以使用这种超结MOSFET而不会造成任何效率损失。无源钳位分支由一个电容器分压器和两个二极管组成,并被添加到FB-CCV的dc侧,因此,克服了有源阻尼分支的弱点,并且在续流期间实现了更好的钳位性能。在主开关和续流开关之间的空载时间内,FB-CCV的对角主开关的反并联二极管形成续流路径,以将共模电压钳制为恒定值,并提出了一种准单极性SPWM策略。对FB-CCV,Heric,H6和HB-ZVR拓扑的工作原理,差模和共模特性进行了分析和比较。最后,通过额定功率为5 kW的通用原型逆变器验证了FB-CCV的可行性。

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