实时环境噪声消除在开放区域测试站点的EMI测量

A. Frech, P. Russer
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引用次数: 11

摘要

根据CISPR 16-2-3的标准,电磁干扰(EMI)的测量是在消声室或在开放区域的测试场所进行的。在开放的测试场所进行测试时,必须选择一个人造噪音最小的偏远地点,以避免被测试设备的发射被环境信号覆盖。标准中描述的规范测量设置和程序是强制性的,用于在30MHz至1ghz范围内的辐射发射测量的符合性测量和可重复测量结果。本文提出了抑制有害环境噪声的方法,从而允许在噪声污染的开放试验场进行测量。通过使用超高速模数转换器在时域对发射信号进行采样,并应用快速傅立叶变换,与在频域使用传统外差接收器进行的测量相比,EMI测量速度提高了几个数量级。该系统将时域技术与自适应滤波技术相结合,可以在存在环境噪声的情况下进行超快速发射测量。基于强大的硬件平台,提出了具有实时自适应降噪能力的先进策略。对频域自适应滤波和时域自适应滤波进行了比较。针对在现场可编程门阵列上实现降噪算法,对自适应滤波算法进行了研究和改进,通过优化的数字信号实时处理,保证了持续的高数据吞吐量。高达1ghz的测量是在城市内部站点进行的。实时环境噪声抑制显示在一次超过125MHz的频带上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-time ambient noise cancellation for EMI measurements on open area test sites
According to the standard CISPR 16-2-3 measurements of electromagnetic interferences (EMI) are carried out either in anechoic chambers or on open area test sites. For testing on open test sites it is necessary to choose a remote location where man-made noise is minimum to avoid covering of the emissions of the device under test by ambient signals. The regulated measurement setup and procedure, described in the standard, is mandatory for compliance measurements and reproducible measurement results of radiated emission measurements in the range of 30MHz to 1 GHz. In this paper methods are presented to suppress unwanted ambient noise and thus allow to perform measurements on noise polluted open test sites. By using ultra high-speed analog-to-digital converters sampling the emissions signal in time-domain and applying the fast Fourier transformation EMI measurements are sped-up by several orders of magnitude compared to measurements carried out with traditional heterodyne receivers operating in frequency domain. Combining the time-domain technology together with adaptive filter techniques the presented system can perform ultra-fast emission measurements in the presence of ambient noise. Advanced strategies with real-time capability for adaptive noise cancellation based on a powerful hardware platform are shown. Frequency domain and time-domain adaptive filtering are compared. The adaptive filter algorithms are investigated and enhanced in respect of implementing the noise cancelling algorithm on field programmable gate arrays ensuring a continuously high data-throughput by an optimized digital signal processing in real-time. Measurements up to 1 GHz are carried out on inner urban sites. Ambient noise suppressing in real-time is shown in frequency bands of over 125MHz at once.
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