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Simulation of Alternative Measurement System for EMI Filters Worst-case Identification

机译:EMI滤波器最坏情况识别的替代测量系统的仿真

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This paper deals with the approximate worst-case test method for testing the insertion loss of the EMI filters. The systems with 0.1 Ω and 100 Ω impedances are usually used for this testing. These measuring systems are required by the international CISPR 17 standard. The main disadvantage of this system is the 0.1 Ω impedance transformer. The dynamic range for the transformation from the 50 Ω, which is most common matched impedance for the measurement setups, to 0.1 Ω is very large. It is not easy to produce such transformers with this high impedance transformation ratio. These transformers have usually very narrow bandwidth. This paper discusses the alternative system with 1 Ω and 100 Ω impedances. The mathematical model for the first estimation is also discussed there and the optimal configuration with 1 Ω and 100 Ω impedances is chosen according the calculated results. The performance of these systems was tested on several filters and the obtained data are depicted, too. The performance comparison of several filters in several systems is also included. The performance of alternate worst-case system is discussed in the conclusion.
机译:本文介绍了用于测试EMI滤波器插入损耗的近似最坏情况测试方法。此测试通常使用阻抗为0.1Ω和100Ω的系统。这些测量系统是国际CISPR 17标准所必需的。该系统的主要缺点是0.1Ω阻抗变压器。从50Ω(测量设置中最常见的匹配阻抗)到0.1Ω的转换动态范围非常大。制造具有这种高阻抗变换比的变压器并不容易。这些变压器通常具有非常窄的带宽。本文讨论了具有1Ω和100Ω阻抗的替代系统。在此还讨论了第一次估算的数学模型,并根据计算结果选择了具有1Ω和100Ω阻抗的最佳配置。这些系统的性能在几个滤波器上进行了测试,并且还描述了获得的数据。还包括几个系统中几个滤波器的性能比较。结论中讨论了备用最坏情况系统的性能。

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