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Use of microwave lenses in phase retrieval microwave holography of reflector antennas

机译:微波透镜在反射器天线的相位恢复微波全息术中的使用

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The Misell (1973) phase retrieval algorithm for microwave holography requires the capability to axially move an antenna's subreflector or feed to obtain a defocused far-field magnitude pattern. A microwave lens may be used as an alternative method of defocusing an antenna. A metal plate lens has been designed and constructed for use in phase retrieval holography at the Georgia Tech Woodbury Research Facility. Its phase variation across the aperture was chosen to have a parabolic profile in order to imitate the effect of subreflector or feed translation. A two-dimensional (2-D) finite-difference time-domain simulation has been performed to characterize the lens. Measurements, using the measured aperture phase of the lens transfer function as a phase correction term in the Misell algorithm, show the results to be comparable with that of phase coherent holography. Other types of microwave lenses such as a Fresnel zone plate, a bed of circular waveguides, and a standard dielectric lens are also being studied.
机译:用于微波全息术的Misell(1973)相位检索算法要求能够轴向移动天线的副反射器或馈电以获得散焦远场幅度模式。微波透镜可以用作使天线散焦的替代方法。佐治亚理工大学伍德伯里研究中心已设计并制造出一种金属板透镜,用于相位检索全息术。选择其在孔径上的相位变化以具有抛物线轮廓,以模仿次反射器或馈送平移的影响。已经进行了二维(2-D)有限差分时域仿真来表征镜头。在Misell算法中,使用测得的透镜传递函数的孔径相位作为相位校正项的测量结果表明,该结果可与相干全息照相相媲美。还正在研究其他类型的微波透镜,例如菲涅耳波带片,圆形波导床和标准介电透镜。

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