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A ZVS Grid-Connected Full-Bridge Inverter With a Novel ZVS SPWM Scheme

机译:具有新型ZVS SPWM方案的ZVS并网全桥逆变器

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摘要

A zero-voltage switching (ZVS) grid-connected full-bridge inverter and its modulation schemes are investigated. A novel sinusoidal pulse width modulation scheme for the ZVS full-bridge inverter (ZVS SPWM) is proposed in this paper. The ZVS SPWM is evolved from the double-frequency SPWM by adding gate drive to the auxiliary switch. The ZVS condition is analyzed and the circulation loss of the resonant branch is optimized by adjusting the energy storage in the resonant inductor. The reverse recovery of the body-diode of MOSFET is relieved and ZVS is realized for both main and auxiliary switches. The filter inductors are significantly reduced with higher switching frequency. The design guideline of resonant parameters and the implementation of ZVS SPWM in DSP controller are introduced. The ZVS SPWM scheme is verified on a 3-kW inverter prototype. According to the experimental result, peak efficiency as 98.8% is achieved.
机译:研究了零电压开关并网全桥逆变器及其调制方案。提出了一种新颖的ZVS全桥逆变器(ZVS SPWM)正弦脉冲宽度调制方案。通过将栅极驱动器添加到辅助开关,ZVS SPWM从双频SPWM演变而来。分析ZVS条件,并通过调节谐振电感器中的能量存储来优化谐振支路的循环损耗。减轻了MOSFET体二极管的反向恢复,并为主开关和辅助开关实现了ZVS。随着开关频率的提高,滤波电感器明显减少。介绍了谐振参数的设计指南以及DSP控制器中ZVS SPWM的实现。 ZVS SPWM方案已在3kW逆变器原型上得到验证。根据实验结果,达到了98.8%的峰值效率。

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