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A High Accuracy Characterization Method of Busbar Parasitic Capacitance for Three-level Converters Based on Vector Network Analyzer

机译:基于向量网络分析仪的三级转换器汇流杆寄生电容的高精度表征方法

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Parasitic capacitance in power loop can impact switching performance of converters. Depending on the locations of those capacitors, they can mitigate switching stress if paralleled to DC-link capacitors, or introduce additional switching loss if paralleled to device output capacitance, Coss, or intensify common-mode EMI noise if paralleled to switching-node stray capacitance. Thus high-accuracy characterization of parasitic capacitance is necessary to estimate the performance of converter. This paper proposes novel method to measure stray capacitance in laminated busbar. Such method is based on a vector network analyzer (VNA). The direct assessment of each node-to-node capacitance is the key advantage compared to the traditional method. It also simplifies measurement process, avoids complicated math operation, and improves measurement accuracy in applications of assessing capacitance of the multiple-node systems, for example, three-level converters. This paper illustrates proposed method by measuring a laminated busbar. Design of customized fixtures is discussed for improving measurement consistency and accuracy. Measurement results are compared to the traditional method and ANSYS Q3D simulation to prove its accuracy.
机译:电源循环中的寄生电容会影响转换器的切换性能。根据这些电容器的位置,它们可以缓解与直流链路电容器并联的开关应力,或者如果并联地引入额外的开关损耗,如果并联到设备输出电容,COSS,或者加强共模EMI噪声,如果并联到切换节点杂散电容。因此,需要对寄生电容的高精度表征来估计转换器的性能。本文提出了一种测量层压母线中杂散电容的新方法。这种方法基于矢量网络分析器(VNA)。与传统方法相比,每个节点到节点电容的直接评估是关键优势。它还简化了测量过程,避免了复杂的数学操作,并提高了评估多节点系统电容的应用中的测量精度,例如三级转换器。本文通过测量层压母线来说明所提出的方法。讨论了定制夹具的设计,用于提高测量一致性和准确性。将测量结果与传统方法和ANSYS Q3D仿真进行比较,以证明其精度。

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