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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Near-field to near/far-field transformation for arbitrarynear-field geometry utilizing an equivalent electric current andMoM
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Near-field to near/far-field transformation for arbitrarynear-field geometry utilizing an equivalent electric current andMoM

机译:利用等效电流和MoM对任意近场几何进行近场到近/远场转换

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摘要

Presented here is a method for computing near- and far-field patterns of an antenna from its near-field measurements taken over an arbitrarily shaped geometry. This method utilizes near-field data to determine an equivalent electric current source over a fictitious surface which encompasses the antenna. This electric current, once determined, can be used to ascertain the near and the far field. This method demonstrates the concept of analytic continuity, i.e., once the value of the electric field is known for one region in space, from a theoretical perspective, its value for any other region can be extrapolated. It is shown that the equivalent electric current produces the correct fields in the regions in front of the antenna regardless of the geometry over which the near-field measurements are made. In this approach, the measured data need not satisfy the Nyquist sampling criteria. An electric field integral equation is developed to relate the near field to the equivalent electric current. A moment method procedure is employed to solve the integral equation by transforming it into a matrix equation. A least-squares solution via singular value decomposition is used to solve the matrix equation. Computations with both synthetic and experimental data, where the near field of several antenna configurations are measured over various geometrical surfaces, illustrate the accuracy of this method
机译:这里提出的是一种根据在任意形状的几何结构上进行的近场测量来计算天线的近场和远场方向图的方法。该方法利用近场数据来确定围绕天线的虚拟表面上的等效电流源。一旦确定该电流,就可以用来确定近场和远场。该方法演示了解析连续性的概念,即,一旦从空间角度了解了空间中某个区域的电场值,就可以推断出其在任何其他区域的值。结果表明,不管进行近场测量的几何形状如何,等效电流都会在天线前面的区域中产生正确的场。用这种方法,测得的数据不必满足奈奎斯特采样标准。建立了一个电场积分方程,将近场与等效电流联系起来。采用矩量法将积分方程转换为矩阵方程,从而求解积分方程。通过奇异值分解的最小二乘解用于求解矩阵方程。用合成和实验数据进行的计算(其中在各种几何表面上测量几种天线配置的近场)说明了该方法的准确性

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