A projection method for solving discretezed inverse problems for antenna measurements

A. A. Slobodyanenko
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Abstract

In the article, the problems of determining and monitoring antenna parameters, solved using measurements in the near field, are presented in a unified formulation corresponding to the gene-ralized inverse radiation problem in the form of an integral equation of the first kind. Within the framework of the numerical approach to the solution, the equation is discretized, and then the solution is sought approximately as a solution to the normal system of equations. It is shown that an approximate solution to the discretized problem that satisfies the normal system is also a solution to an equation with an orthogonal projector on its right-hand side. On the basis of this formulation, a new method of iterative projections is proposed. The efficiency of the method is demonstrated by the example of solving the problem of reconstructing the radiation pattern of a horn antenna from near-field data calculated for the electrodynamic model of the antenna in the HFSS program. The results of the proposed method are compared with the results of solving the problem by the method of decomposition in singular numbers.
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求解天线测量离散反问题的投影法
本文将天线参数的确定和监测问题用近场测量解决,用第一类积分方程的形式统一表述,对应于基因实现的逆辐射问题。在求解数值方法的框架内,将方程离散化,然后将解近似地作为正规方程组的解来寻求。证明了满足正规系统的离散化问题的近似解也是右手边有正交投影的方程的解。在此基础上,提出了一种新的迭代投影方法。通过HFSS程序中利用天线电动力学模型计算的近场数据重构喇叭天线辐射方向图的实例,验证了该方法的有效性。将该方法的结果与用奇异数分解方法求解该问题的结果进行了比较。
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