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Bistatic RCS Calculations From Cylindrical Near-Field Measurements—Part I: Theory

机译:圆柱近场测量的双基地RCS计算—第一部分:理论

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A theory is presented for computing scattered far fields of targets from cylindrical near-field measurements. The targets are illuminated by plane waves and measured in a radio anechoic chamber on a cylindrical scan surface. The scattered field on the scan cylinder is obtained by background subtraction. The near-field data is truncated at the top, bottom, and angular edges of the scan cylinder. These truncation edges can cause inaccuracies in the computed far fields. Correction techniques are developed for the top and bottom truncation edges. The cylindrical wave expansions automatically apply angular tapers to the near-field data that reduce the effect of the angular truncation edges. The taper functions depend on the angular sample spacing and are related to the currents induced on perfectly electrically conducting PEC cylinders in related scattering problems. The method of stationary phase is employed with asymptotic expressions for the taper functions to determine the area on the scan cylinder that is most important for computing the far field in a given direction. The theory is validated through numerical examples involving electrically large scatterers. The edge-correction techniques significantly increase the accuracy of the computed far field. A companion paper presents experimental results
机译:提出了一种从圆柱近场测量计算目标的分散远场的理论。用平面波照射目标,并在圆柱扫描表面上的无线电消声室中对其进行测量。扫描筒上的散射场是通过背景减法获得的。近场数据在扫描柱面的顶部,底部和角度边缘被截断。这些截断边可能会导致计算出的远场不准确。针对顶部和底部截断边缘开发了校正技术。圆柱波展开自动将角度锥化应用于近场数据,从而减少了角度截断边缘的影响。锥度函数取决于角度样本间距,并且与相关散射问题中在完美导电的PEC圆柱体上感应的电流有关。对于锥度函数,采用具有渐近表达式的固定相方法来确定扫描柱面上的区域,这对于在给定方向上计算远场最重要。通过涉及电大散射体的数值示例验证了该理论。边缘校正技术显着提高了计算出的远场的准确性。随附论文介绍实验结果

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