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A novel load adaptive zero voltage switching utilizing diode reverse recovery current for soft-switching choppers and inverters

机译:利用二极管反向恢复电流的新型负载自适应零电压开关,适用于斩波器和逆变器的软开关

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Diode reverse recovery normally increases switching losses and produces noises in power electronics circuits. Over the past few decades, device manufacturers put a lot of effort to improve the reverse recovery speed and softness by sacrificing the conduction losses. This paper, however, introduces a novel zero voltage transition concept that utilizes diode reverse recovery current as resonant inductor boosting current to achieve true zero voltage,operation for both resonant snubber based choppers and inverters. Because the amplitude of the diode reverse recovery current is not much dependent on the load current, a near constant boost in resonant inductor current can be implemented with a fixed timing control. The boosting current level can be controlled by selection of diode and resonant inductance. The resonant snubber based chopper and inverter circuits can thus achieve load current adaptively without load current feedback. Simulation results have verified the effectiveness of the proposed method. Experimental results of a two-quadrant full bridge chopper also indicate that the proposed method can achieve zero-voltage switching for the main device at all load current conditions. The proposed design method can also be implemented for other types of zero-voltage transition schemes such as auxiliary resonant commutated pole (ARCP), resonant snubber inverter (RSI), and coupled inductor schemes.
机译:二极管反向恢复通常增加开关损耗并在电力电子电路中产生噪声。在过去的几十年里,设备制造商通过牺牲导电损耗来提高改善反向恢复速度和柔软性的努力。然而,本文介绍了一种新型零电压转换概念,其利用二极管反向恢复电流作为谐振电感器升压电流,以实现真正的零电压,用于基于谐振的缓冲器和逆变器的谐振缓冲器的操作。因为二极管反向恢复电流的幅度不太依赖于负载电流,所以可以用固定定时控制实现谐振电感电流中的近常数升压。可以通过选择二极管和谐振电感来控制升压电流水平。因此,谐振缓冲器和逆变器电路可以自适应地实现负载电流而没有负载电流反馈。仿真结果已验证了该方法的有效性。双象限全桥斩波器的实验结果还表明该方法可以在所有负载电流条件下实现主设备的零电压切换。所提出的设计方法也可以用于其他类型的零电压过渡方案,例如辅助谐振换向极(ARCP),谐振缓冲逆变器(RSI)和耦合电感器方案。

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