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Analysis of slotted sectoral waveguide array antennas with multilayer radomes and nonzero metal thickness

机译:具有多层天线罩和非零金属厚度的缝隙扇形波导阵列天线的分析

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Slotted waveguide array antennas offer low cross-polarization and high power handling capacity, and they are low-profile which enables them to be used in conformal and structurally-integrated antenna solutions. Hence, they are excellent candidates for phased array antennas in radar applications, especially in air platforms. Aerodynamics and radar cross section (RCS) for an air platform are critical design considerations for air platforms; therefore, conformal and structurally-integrated solutions with integrated multilayer (sandwich) radomes are desired. Although the accurate and efficient design and analysis of low-profile conformal slotted waveguide arrays is of great interest, available solution methods in the literature usually suffer in terms of efficiency and memory requirements. Among the available solution methods, one of the widely used solvers are integral equation (IE) based ones that utilize the method of moments (MoM). However, IE solvers suffer from long matrix fill times, especially when cylindrically stratified media are considered.
机译:开槽波导阵列天线提供低交叉极化和高功率处理能力,它们是低调,使它们能够以共形和结构上集成的天线解决方案使用。因此,它们是雷达应用中相位阵列天线的优秀候选者,尤其是在空中平台中。空气平台的空气动力学和雷达横截面(RCS)是空气平台的关键设计考虑因素;因此,期望具有集成多层(夹层)放射线的共形和结构上的溶液。虽然低调的低调共形槽波导阵列的准确和高效的设计和分析非常兴趣,但文献中的可用解决方案方法通常在效率和内存要求方面受到影响。在可用的解决方案方法中,广泛使用的求解器之一是利用时刻(MOM)方法的基于组的整体方程(即)。然而,即溶剂患者患有长基质填充时间,特别是当考虑圆柱形分层培养基时。

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