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Enhanced imaging of reflector antenna surface distortion using microwave holography

机译:使用微波全息术增强反射器天线表面畸变的成像

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Two signal processing techniques are discussed that improve the accuracy of a microwave holographic measurement by removing unwanted signals from the aperture distribution: pattern simulation and subtraction, and time domain filtering. Pattern simulation and subtraction involves modeling unwanted scattering mechanisms and then removing them from the measured far-field data. Time domain gating requires a swept frequency measurement of each far-field point to separate undesired scattering mechanisms from the desired response. Measurements taken on a focal point geometry and a Cassegrain geometry at 11 GHz in the Ohio State University ElectroScience Laboratory Compact Range provided excellent amplitude and phase stable data to be processed by the holographic analysis system. Pattern simulation and subtraction was applied to both geometries. Surface deformation profiles generated for the Cassegrain antenna by this system were compared to an optical measurement of the main reflector surface. Good agreement was obtained. Because of system limitations, time domain filtering could not be applied.
机译:讨论了两种信号处理技术,它们通过从孔径分布中删除不需要的信号来提高微波全息测量的准确性:模式仿真和减法以及时域滤波。模式仿真和减法涉及对不需要的散射机制进行建模,然后从测得的远场数据中将其删除。时域选通需要对每个远场点进行扫频测量,以将不需要的散射机制与所需响应分开。在俄亥俄州立大学电子科学实验室紧凑范围内,在11 GHz时对焦点几何形状和Cassegrain几何形状进行的测量提供了出色的幅度和相位稳定数据,可通过全息分析系统进行处理。图案模拟和减法应用于两种几何。通过该系统为卡塞格伦天线生成的表面变形轮廓与主反射器表面的光学测量结果进行了比较。获得了良好的协议。由于系统限制,无法应用时域过滤。

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