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Scattering from a cylindrically conformal slotted waveguide arrayantenna

机译:圆柱共形缝隙波导阵列天线的散射

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摘要

A numerical method is developed to investigate electromagnetic scattering by a cylindrically conformal waveguide-fed slot array. The problem is first formulated in terms of integral equations using the equivalence principle. The integral equations are then solved using the method of moments (MoM) in conjunction with global sinusoidal basis functions and Galerkin's testing procedure. The MoM solution requires the evaluation of the generalized admittance matrices involving various dyadic Green's functions. The slow convergence of the series associated with the summation of waveguide modes is accelerated using the Kummer transformation and the slow convergence of the series associated with the summation of the exterior modes is avoided by using the asymptotic solutions with proper treatment for singular integrals. The evaluation of the excitation vector and scattered field is also accelerated using Watson's transformation and asymptotic solutions. Numerical results are presented to illustrate the scattering characteristics of the cylindrically conformal waveguide-fed slot arrays, such as the effects of curvature, slot thickness, and waveguide termination on the radar cross section (RCS) of the arrays
机译:开发了一种数值方法来研究圆柱形共形波导馈送的缝隙阵列的电磁散射。首先使用等价原理根据积分方程表述问题。然后,使用矩量法(MoM)结合整体正弦基函数和Galerkin的测试程序来求解积分方程。 MoM解决方案需要评估涉及各种二进格林函数的广义导纳矩阵。使用Kummer变换可加快与波导模式求和相关的级数的缓慢收敛,并且可以通过对奇异积分进行适当处理的渐近解来避免与外部模式求和相关的级数的缓慢收敛。使用沃森变换和渐近解也可以加速对激励矢量和散射场的评估。数值结果表明了圆柱状共形波导馈送缝隙阵列的散射特性,例如曲率,缝隙厚度和波导终端对阵列雷达截面(RCS)的影响

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