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An asymptotic closed-form microstrip surface Green's function for the efficient moment method analysis of mutual coupling in microstrip antennas

机译:渐近闭式微带表面格林函数,用于微带天线互耦合的高效矩量法分析

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A relatively simple closed-form asymptotic representation for the single-layer microstrip dyadic surface Green's function is developed. The large parameter in this asymptotic development is proportional to the lateral separation between the source and field points along the air-dielectric interface. This asymptotic solution remains surprisingly accurate even for very small (a few tenths of a free-space wavelength) lateral separation of the source and field points. Thus, using the present asymptotic approximation of the Green's function can lead to a very efficient moment method (MM) solution for the currents on an array of microstrip antenna patches and feed lines. Numerical results based on the efficient MM analysis using the present closed-form asymptotic approximation to the microstrip surface Green's function are given for the mutual coupling between a pair of printed dipoles on a single-layer grounded dielectric slab. The accuracy of the latter calculation is confirmed by comparison with numerical results based on a MM analysis which employs an exact integral representation for the microstrip Green's function.
机译:提出了一种相对简单的单层微带二进表面格林函数的闭式渐近表示。在这种渐近发展中,较大的参数与沿空气-介电界面的源点和场点之间的横向间隔成比例。即使源点和场点的横向间隔很小(十分之一波长的自由空间),这种渐近解仍然具有惊人的精度。因此,使用格林函数的当前渐近逼近可以为微带天线贴片和馈线阵列上的电流提供非常有效的矩量法(MM)解决方案。基于有效的MM分析,使用对微带表面格林函数的当前闭合形式渐近近似,给出了数值结果,用于单层接地电介质板上一对印刷偶极子之间的相互耦合,给出了数值结果。通过与基于MM分析的数值结果进行比较,可以确定后一种计算的准确性,该分析采用了精确的微带格林函数积分表示。

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