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Antenna Calibration in EMC Semi-anechoic Chamber Using Standard Antenna Method (SAM) and Standard Site Method (SSM)

机译:使用标准天线方法(SAM)和标准现场方法(SSM)在EMC半消声室内进行天线校准

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Electromagnetic Compatibility (EMC) engineers should self-check the antenna's condition and parameters, including Antenna Factor (AF) and Gain, continuously, by calibrating the antenna. Therefore, several analyses have been done to compare between SAM and SSM in EMC testing lab. Based on the analysis, the antenna to be used inside a 3 m semi-anechoic chamber need to be positioned 1.5 m above the ground plane to avoid the reflection. The Antenna Factor (AF) results show a good agreement with manufacturer data. SAM is recommended as a calibration method in the semi-anechoic chamber because the percentage error is 5% which is lower compared with SSM (18%). This is due to the site imperfection in the EMC lab. The uncertainty for the EMC lab is up to ±4 dB, compared to the calibration test site where allowed uncertainty is ±1 dB. Therefore, an absorber needs to be placed between two antennas. In addition, the phase center of the reference antenna needs to take into consideration for highly accurate AF.
机译:电磁兼容性(EMC)工程师应通过校准天线连续不断地自我检查天线的状况和参数,包括天线系数(AF)和增益。因此,在EMC测试实验室中已经进行了一些分析,以比较SAM和SSM。根据分析,要在3 m半消声室内使用的天线需要放置在距地面1.5 m处,以避免反射。天线因子(AF)结果表明与制造商数据有很好的一致性。建议将SAM作为半消声室的校准方法,因为百分比误差为5%,比SSM(18%)低。这是由于EMC实验室中的站点不完善所致。与允许的不确定度为±1 dB的校准测试站点相比,EMC实验室的不确定度高达±4 dB。因此,需要在两个天线之间放置一个吸收器。另外,需要参考天线的相位中心以实现高度精确的自动对焦。

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