首页> 外文会议>Antennas amp; Propagation Conference, 2009. LAPC 2009 >Complex-point dipole formulation of probe-corrected spherical near-field scanning of electromagnetic fields using symmetric higher-order probes
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Complex-point dipole formulation of probe-corrected spherical near-field scanning of electromagnetic fields using symmetric higher-order probes

机译:使用对称高阶探头对电磁场进行探头校正的球形近场扫描的复点偶极子公式

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A computationally efficient probe-corrected electromagnetic theory is presented for computing the field of an arbitrary source of finite extent (test antenna) from measurements with a known symmetric probe on a surrounding spherical surface. The new theory, which can deal with higher-order probes, has exactly the same computational complexity as the standard theory, which can deal only with first-order probes. By representing the probe with complex-point dipoles, the new theory avoids the use of translation and rotation theorems as well as differential operators. The disadvantage of the new theory is that it requires the use of nonlinear optimization to determine the probe model. Numerical validation is achieved through an example involving a complicated source measured with a square waveguide probe.
机译:提出了一种计算有效的探针校正电磁理论,该电磁理论用于通过使用已知对称探针在周围球形表面上进行的测量来计算有限范围的任意源(测试天线)的场。可以处理高阶探针的新理论的计算复杂度与仅可以处理一阶探针的标准理论完全相同。通过用复点偶极子表示探针,新理论避免了平移和旋转定理以及微分算子的使用。新理论的缺点是它需要使用非线性优化来确定探针模型。通过一个示例进行数值验证,该示例涉及使用方形波导探头测量的复杂光源。

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