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Exact solution of Hallén''s integral equations by Numerical Integral Equation Method

机译:用数值积分方程法精确求解哈伦积分方程

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Hallén''s integral equation is widely used to calculate the current distribution and input- impedance of dipole antennas. There are two problems. One is that Hallén''s integral equation using an approximate kernel has no solution. The other one is that Hallén''s integral equation using the exact kernel with a δ function feed has also no solution. In this paper Numerical Integral Equation Method (NIEM) is proposed to solve these problems. A modification function which converts the approximate kernel to the exact kernel is derived. As the modification function diverges, three points correction method is also proposed. Using the solution of offset feed by a δ function source, a problem with a finite gap feed is solved. The validity of this theory is confirmed comparing the measured result and the calculated result.
机译:Hallén'的整体方程被广泛用于计算偶极天线的电流分布和输入阻抗。有两个问题。一个是Hallén'使用近似内核的整体方程没有解决方案。另一个是Hallén'使用具有δ功能馈送的确切内核的整体方程也没有解决方案。在本文中,提出了数值积分方程方法(NIEM)来解决这些问题。派生了将近似内核转换为确切内核的修改函数。作为修改函数发散,还提出了三个点校正方法。使用Δfut函数源的偏移馈送的解决方案,解决了有限间隙馈送的问题。确认了该理论的有效性比较了测量结果和计算结果。

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