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Fast and Accurate Analysis of Reflector Antennas With Phased Array Feeds Including Multiple Reflections Between Feed and Reflector

机译:快速准确地分析具有相控阵馈源的反射天线,包括馈源和反射器之间的多次反射

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Several electrically large phased array feed (PAF) reflector systems are modeled to examine the mechanism of multiple reflections between parabolic reflectors and low- and high-scattering feeds giving rise to frequency-dependent patterns and impedance ripples. The PAF current is expanded in physics-based macro domain basis functions (CBFs), while the reflector employs the physical optics (POs) equivalent current. The reflector-feed coupling is systematically accounted for through a multiscattering Jacobi approach. An FFT expands the reflector radiated field in only a few plane waves, and the reflector PO current is computed rapidly through a near-field interpolation technique. The FEKO software is used for several cross validations, and the convergence properties of the hybrid method are studied for several representative examples showing excellent numerical performance. The measured and simulated results for a 121-element Vivaldi PAF, which is installed on the Westerbork Synthesis Radio Telescope, are in very good agreement.
机译:对几个电大相控阵馈源(PAF)反射器系统进行建模,以检查抛物线形反射器与低散射和高散射馈源之间的多次反射的机制,从而产生与频率相关的图案和阻抗纹波。 PAF电流在基于物理的宏域基函数(CBF)中得到扩展,而反射器采用物理光学(PO)等效电流。反射器-馈入耦合通过多散射Jacobi方法得到系统解决。 FFT仅在几个平面波中扩展反射器辐射场,并且通过近场插值技术快速计算反射器PO电流。 FEKO软件用于多个交叉验证,并且针对几个具有出色数值性能的代表性示例研究了混合方法的收敛特性。安装在Westerbork综合射电望远镜上的121个元素的Vivaldi PAF的测量和模拟结果非常吻合。

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