电力电子应用中的半导体宏建模

S. Thamm, M. Leone
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引用次数: 1

摘要

电子器件的宏观建模技术可以降低仿真模型的复杂性,并具有足够的精度。提出了一种适合描述电力电子器件功能和emc相关行为的建模方法,并在二极管上进行了测试。通过几个高斯径向基函数的叠加可以非常精确地模拟其静态和动态行为。瞬态仿真和参数优化的耦合允许有效的参数化。由此产生的宏模型的spice兼容电路描述确保了在不同仿真环境中的集成。提出的宏建模技术在典型的转换器应用中进行了演示。通过与使用标准SPICE库二极管模型的参考仿真进行比较,验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Semiconductor macromodeling for power electronic applications
The macromodeling technique of electronic devices allows the reduction of the complexity of simulation models with adequate accuracy. A modeling approach suitable to describe the functional and the EMC-relevant behavior of power electronics devices is presented and tested on a diode. The static and the dynamic behavior can be modeled very exactly through the superposition of several Gaussian radial basis functions. The coupling of a transient simulation and parameter optimization allows an efficient parameterization. The resulting SPICE-compatible circuit description of the macromodel ensures the integration in different simulation environments. The suggested macromodeling technique is demonstrated for typical converter applications. Validation is carried out by comparison with reference simulations using a standard SPICE library diode model.
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