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Generalized Frequency Plane Model of a Spiral Winding Structure Integrated Power Series Resonator

机译:螺旋绕组结构的广义频率平面模型集成功率串联谐振器

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The technology of integrated passive components for power electronics is at present being developed. Because of the compact structures and the special implementation techniques of these integrated modules, the high frequency parasitic resonances are normally significant and may have negative impact on the performance and EMI characteristics. However, the existing modeling technique can only predict the fundamental resonant frequency and showed neither the causes of the high frequency resonance nor how to calculate those accurately. Based on the modeling of multi-conductor transmission structures, this paper presents the modeling of the spiral winding structure integrated series resonant module. This structure can be treated as several multi-conductor transmission structures connected in certain patterns. Different connection patterns only determine the voltage and current boundary conditions with which the equations can be solved. The MATLAB calculation results correlate well with the small-signal measurement results. The calculation sensitivities with respect to variation of various parameters are also discussed and the causes of resonance at different frequencies are identified.
机译:目前正在开发出电力电子设备集成无源部件技术。由于结构紧凑和这些集成模块的特殊实现技术,高频寄生共振通常具有显着性,并且可能对性能和EMI特性产生负面影响。然而,现有的建模技术只能预测基本谐振频率,并且既不显示高频共振的原因也不是如何准确计算这些。基于多导体传动结构的建模,本文介绍了螺旋绕组结构集成串联谐振模块的建模。该结构可以被视为以某些模式连接的几个多导体传动结构。不同的连接模式仅确定可以解决方程的电压和电流边界条件。 MATLAB计算结果随着小信号测量结果良好相关。还讨论了关于各种参数的变化的计算敏感性,并且识别出不同频率的谐振的原因。

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