高动态移相全桥变换器的高效小信号算法

M. Baumann, Bert Haj Ali, Christoph Weissinger, H. Herzog
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引用次数: 1

摘要

当前,高动态汽车动力系统的虚拟开发面临着重大挑战。汽车动力系统表现出特别快速的动态变化。电力电子电源的负载波动较大,需要在虚拟预概念和系统设计中加以考虑。本文介绍了一种通过迭代计算二极管导通时间和相应的状态空间系统来有效地复制相移全桥变换器动态的算法。所提出的变换器模型包括一个额外的电压源,表示变换器在不同负载相关死区行为下的动态特性。附加电压是在预测整个开关周期的漏电流的基础上计算出来的。与切换模型相比,该算法的计算时间减少了91%。
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Efficient Small-Signal Algorithm for High Dynamic Phase-Shifted Full-Bridge Converters
Nowadays, the virtual development of high-dynamic automotive power systems faces major challenges. Automotive power systems exhibit particularly fast-changing dynamics. The load of power electronic supplies highly fluctuates and therefore needs to be considered during virtual pre-conception and system design. This paper introduces an algorithm being able to efficiently replicate dynamics of a phase-shifted full-bridge converter through iteratively calculating diode conducting times and corresponding state-space systems. The proposed converter model includes an additional voltage source representing the dynamics of the converter for different load-dependent deadtime behaviors. The additional voltage is calculated on basis of predicting the leakage current throughout one switching cycle. The algorithm reduces computation time by 91% compared to the switched model.
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