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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Frequency-domain Green's function for a planar periodicsemi-infinite phased array .I. Truncated floquet wave formulation
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Frequency-domain Green's function for a planar periodicsemi-infinite phased array .I. Truncated floquet wave formulation

机译:平面周期半无限相控阵.I的频域格林函数。截断的浮球波公式

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摘要

This two-part sequence deals with the derivation and physical interpretation of a uniform high-frequency solution for the field radiated at finite distance by a planar semi-infinite phased array of parallel elementary electric dipoles. The field obtained by direct summation over the contributions from the individual radiators is restructured into a double series of wavenumber spectral integrals whose asymptotic reduction yields a series encompassing propagating and evanescent Floquet waves (FWs) together with corresponding diffracted rays, which arise from scattering of the FW at the edge of the array. The formal aspects of the solution are treated in the present paper. They involve a sequence of manipulations in the complex spectral wavenumber planes that prepare the integrands for subsequent efficient and physically incisive asymptotics based on the method of steepest descent. Different species of spectral poles define the various species of propagating and evanescent FW. Their interception by the steepest descent path (SDP) determines the variety of shadow boundaries for the edge truncated FW. The uniform asymptotic reduction of the SDP integrals, performed by the Van der Waerden (1951) procedure and yielding a variety of edge-diffracted fields, completes the formal treatment
机译:这个由两部分组成的序列处理了由有限的平行基本电偶极子的平面半无限相控阵在有限距离处辐射的场的统一高频解的推导和物理解释。通过直接求和各个辐射器的贡献而得到的场被重构为波数谱积分的双序列,其渐近减小产生一系列包含传播的和F逝的浮球波(FW)以及相应的衍射射线,这些衍射射线是由于固件在阵列的边缘。解决方案的形式方面在本文中进行了处理。它们涉及复杂频谱波数平面中的一系列操作,这些操作为基于最速下降法的后续有效和物理敏锐渐近性准备积分。光谱极点的不同种类定义了传播和F逝的FW的不同种类。它们被最陡下降路径(SDP)截获的结果决定了边缘截断的FW的阴影边界的变化。通过Van der Waerden(1951)程序执行的SDP积分的均匀渐近约简,并产生各种边缘衍射场,从而完成了形式化处理

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