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Exact solutions of electromagnetic fields in both near and far zones radiated by thin circular-loop antennas: a general representation

机译:细圆环形天线辐射的近区和远区电磁场的精确解:一般表示

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This paper presents an alternative vector analysis of the electromagnetic (EM) fields radiated from thin circular-loop antennas of arbitrary radius a. This method, which employs the dyadic Green's function in the derivation of the EM radiated fields, makes the analysis more general, compact, and straightforward than those two methods published recently by Werner (1996) and Overfelt (1996). Both near and far zones are considered so that the EM radiated fields are expressed in terms of the vector-wave eigenfunctions. Not only the exact solution of the EM fields in the near and far zones outside the region (where ra is obtained in series of the spherical Bessel functions of the first kind. As an example, a Fourier cosine series is used to expand an arbitrary current distribution along the loop and the exact representations of the EM radiated fields due to the loop everywhere are obtained in closed form. The closed form reduces to those for the sinusoidal current loop and further for the uniform current loop. Validity of the approximate formulas is discussed and clarified. Error analysis based on numerical computations of the radiated fields is also given to show the accuracy of the limiting cases.
机译:本文提出了从任意半径为a的薄环形天线辐射的电磁场的另一种矢量分析方法。该方法在推导EM辐射场时采用了二进式格林函数,与最近由Werner(1996)和Overfelt(1996)发表的两种方法相比,使分析更加通用,紧凑和直接。考虑了近区和远区,以便根据矢量波本征函数来表示EM辐射场。通过使用第一类球形Hankel函数不仅可以得出区域外(r a内的近区中辐射的辐射。例如,使用傅立叶余弦级数来扩展沿环路的任意电流分布,并且以封闭形式获得了随处可见的由于环路引起的EM辐射场的精确表示。闭合形式简化为正弦电流回路的形式,并进一步减小为均匀电流回路的形式。讨论并阐明了近似公式的有效性。还给出了基于辐射场数值计算的误差分析,以证明极限情况的准确性。

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