Automated measurement of intermittent signals using a time-domain EMI measurement system

H. H. Slim, S. Braun, Engin Gulten, A. Frech, P. Russer
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引用次数: 8

Abstract

Traditionally emission measurements are carried out in frequency domain using pre- and final scans. Time-domain EMI measurement systems allow to reduce the scan time by orders of magnitude, enabling novel test methods. In this paper the measurement uncertainty for intermittent signals during pre-and final scans is investigated. The effect of the dwell time on the measurement accuracy in the peak and quasipeak detector modes is shown. For conducted emission measurements two test procedures are presented. First method that performs a separate evaluation according to the phase of the LISN, and a second method that performs full maximization. Both methods are used for automated measurement of intermittent and narrowband drifting signals. The total test time is reduced by at least one order of magnitude. Intermittent and narrowband drifting signals, which are still measured today manually, can be measured by the presented procedure automatically. Measurements have been carried out in the frequency range 9 kHz–1 GHz.
使用时域EMI测量系统自动测量间歇性信号
传统的发射测量是在频域使用预扫描和最终扫描进行的。时域EMI测量系统允许通过数量级减少扫描时间,从而实现新的测试方法。本文研究了间歇信号在预扫描和终扫描过程中的测量不确定度。给出了停留时间对峰值和准峰值探测模式下测量精度的影响。对于传导发射测量,提出了两种测试方法。第一个方法根据LISN的阶段执行单独的求值,第二个方法执行完全最大化。这两种方法都用于间歇和窄带漂移信号的自动测量。总测试时间至少减少了一个数量级。间歇性和窄带漂移信号,今天仍然是手动测量,可以通过本程序自动测量。在9 kHz-1 GHz频率范围内进行了测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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