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G/T maximization of a paraboloidal reflector fed by a dipole-diskantenna with ring by using the multiple-reflection approach and themoment method

机译:多重反射法和矩量法求带环偶极子-圆盘天线馈电的抛物面反射镜的G / T最大化

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A 1.8-m paraboloidal reflector fed by a dipole-disk antenna with a beamforming ring is optimized for high G/T at L-band by using the moment method (MM) and the multiple reflection (MR) approach. The MR approach is based on using MM to calculate the radiation and scattering patterns of the feed, using physical optics plus uniform geometrical theory of diffraction (UTD) to include the reflector, and in addition to include the mutual interaction (multiple reflections) between the reflector and the feed by using the expression for the sum of an infinite geometric series. The MR approach is shown to be equally accurate as a MM solution of the complete antenna with reflector, provided the reflector is in the far field of the feed, and the MR approach is much faster. As a result of the calculations using the MR approach, design curves are presented showing how the G/T varies as a function of antenna geometry, size, and elevation angle, all for a given noise profile of the surrounding sky and ground. The computed radiation patterns and G/Ts are compared with measurements for several elevation angles and surrounding terrain
机译:通过使用矩量法(MM)和多重反射(MR)方法,将偶极子盘形天线与波束成形环一起馈入的1.8 m抛物面反射镜优化为L波段的高G / T。 MR方法的基础是使用MM来计算饲料的辐射和散射图样,使用物理光学器件加上均匀的衍射几何理论(UTD)来包括反射器,并且还要包括两个物体之间的相互作用(多次反射)。反射器和馈送通过使用表达式来表示无限的几何级数。 MR方法被证明与带有反射器的完整天线的MM解决方案一样准确,只要反射器位于馈电的远场中,并且MR方法要快得多。作为使用MR方法进行计算的结果,给出了设计曲线,显示了在给定的周围天空和地面噪声轮廓下,G / T如何随天线几何形状,尺寸和仰角而变化。将计算出的辐射方向图和G / T与几个仰角和周围地形的测量值进行比较

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