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Electrical and mechanical uncertainty study in cylindrical near field antenna measurement systems

机译:圆柱近场天线测量系统中的电气和机械不确定性研究

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摘要

In order to evaluate how mechanical or electrical errors may affect in the final results (i.e. radiation patterns, directivity, side lobe levels (SLL), beam width, maximum and null position…), an error simulator based on virtual acquisitions of the measurement of the radiation characteristics in a cylindrical near-field facility has been implemented [1], [2]. In this case, the Antenna Under Test (AUT) is modelled as an array of vertical dipoles and the probe is assumed to be a corrugated horn antenna. This tool allows simulating an acquisition containing mechanical errors – deterministic and random errors in the x-, yand z-position – and also electrical inaccuracies – such as phase errors or noise –. Then, after a near-to-far-field transformation [3], by comparing the results obtained in the ideal case and when including errors, the deviation produced can be estimated. As a result, through virtual simulations, it is possible to determine if the measurement accuracy requirements can be satisfied or not and the effect of the errors on the measurement results can be checked. This paper describes the error simulator implemented and the results achieved for some of the error sources considered for an L-band RADAR antennas in a 15 meters cylindrical near field system.
机译:为了评估机械或电气误差如何影响最终结果(例如,辐射方向图,方向性,旁瓣电平(SLL),光束宽度,最大和零点位置……),基于虚拟测量结果的误差模拟器圆柱形近场设施的辐射特性已经实现[1],[2]。在这种情况下,将被测天线(AUT)建模为垂直偶极子阵列,并假设探头为波纹喇叭天线。该工具可以模拟包含机械误差(x,y和z位置的确定性误差和随机误差)以及电气误差(如相位误差或噪声)的采集。然后,经过近场至远场变换[3],通过比较在理想情况下以及当包含误差时获得的结果,可以估计产生的偏差。结果,通过虚拟仿真,可以确定是否可以满足测量精度要求,并且可以检查误差对测量结果的影响。本文介绍了在15米圆柱近场系统中为L波段RADAR天线考虑的误差模拟器的实现方法以及所获得的一些误差源的结果。

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