基于FFT时域解法研究军用cs101测试中电容间纹波电压

S. Cakir, O. Sen, Mesut Ozturk
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引用次数: 4

摘要

MIL-STD-461F CS101试验是军用和航空航天设备必不可少的传导抗扰度试验之一,但在应用中存在一些挑战。主要的挑战是需要在EUT的工频下测量注入的CS101波纹。如果不采取一些额外的预防措施,测量工频上的CS101波纹几乎是不可能的。MIL-STD-461G不仅要求测量EUT电源输入端产生的CS101纹波电压,还要求测量EUT交流工频下横跨10 μF测试电容的纹波电压,这加剧了交流设备CS101测试的严峻条件。在本文中,我们提出了一种基于FFT的时域解决方案和一种方法,可以在交流EUT电源频率下进行测试时,即时检查电源侧(即整个10 μF测试电容器)的纹波电压,并验证它是否足够低且不影响测试的可靠性。本文提出的方法极大地克服了CS101测试中的难题,使CS101测试结果更加准确。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Ripple Voltage Across Capacitor in Military CS101Test by Using FFT -Based Time Domain Solution
The MIL-STD-461F CS101 test is one of the essential conducted immunity tests for military and aerospace equipment, however it includes some challenges in application. The major challenge is the necessity for the measurement of injected CS101 ripples under the power frequency of the EUT. The measurement of CS101 ripples on the power frequency is almost impossible without taking some extra precautions. In addition to the hard necessity of measuring the CS101 ripple voltage induced across the EUT power input, the other challenge of measuring the ripple voltage that drops across the 10 μF test capacitor under the AC power frequency of the EUT is now required by MIL-STD-461G, which aggravates the severe CS101 test conditions of AC devices. In this paper, we propose a FFT -based time domain solution and a method to instantly check the ripple voltage that drops across the power source side, in other words across the 10 μF test capacitor, during the test under the AC EUT power frequency and to verify that it is low enough and not affecting the reliability of the test. The method proposed in this paper significantly overcomes the CS101 test challenges and makes CS101 test results more accurate.
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