阻抗相互作用与可比性对直流电网2 - 150khz频谱聚集的影响

A. Khilnani, A. Pena-Quintal, E. Ballukja, M. Sumner, David W. P. Thomas, L. Sandrolini, A. Mariscotti
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引用次数: 1

摘要

据报道,直流电网在2 - 150khz范围内的传导辐射水平较高是由变流器开关谐波产生的频谱聚集引起的。对这些频谱聚集的主要影响是直流链路电容器和变换器之间的阻抗相关性。本文分析了直流电网中直流链路与DC/DC变换器在共耦合点处的阻抗相互作用及可比性。用4个直流链路电容器和40个并联DC/DC变换器进行了仿真,并采用全(非线性)和等效源(线性)模型进行了比较。增大的直流侧阻抗与减小的直流链路阻抗相当,降低了直流电网中的电磁干扰,使得第一个谱集的dBμV值减小。这种理解可以从电磁兼容性的角度为直流链路电容器设计提供见解,并为2-150 kHz范围内的直流电源质量标准制定框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Impedance Interaction & Comparability on Spectral Aggregation (2–150 kHz) in DC Grids
The reported higher levels of conducted emissions in DC grids in the 2–150 kHz range are caused by the spectral aggregations resulting from the converter's switching harmonics. The dominant influence for these spectral aggregates is the impedance correlation between the DC-link capacitor and the converters. This paper analyses the impedance interaction & comparability between the DC-link and the DC/DC converters at the point of common coupling in the DC grid. Simulations with four DC-link capacitors and forty parallel DC/DC converters are conducted, with full (non-linear) and equivalent-source (linear) models for comparison. The dBμV values for the first spectral aggregate decrease as the augmenting DC-side impedance becomes comparable with the smaller DC-link impedance, lowering the electromagnetic interference in the DC grid. This understanding may provide insights into the DC-link capacitor design from an electromagnetic compatibility perspective, and towards developing a framework for DC power quality standards in the 2–150 kHz range.
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