航天器用偏振选择反射器

W. Gregorwich
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引用次数: 1

摘要

讨论了k波段偏振选择反射器(PRS)系统的设计与研制。波导模拟器的测量结果与平行线理论非常吻合。PSR的辐射方向图测量结果显示,在一个偏振中几乎完全反射,具有良好的交叉偏振隔离。偏置反射器配置被选择用于研究,因为它是一个紧凑的多功能设计,适用于航天器应用。透过率测试表明,当PSR放置在固体前时,固体反射器的主偏振模式没有明显变化。当PSR适当时,交叉极化水平较低。测量结果还表明,波导模拟器是设计网格反射器的重要工具。平行导线反射能量的测量值与计算值之间具有很好的相关性,这表明不需要通过实验来确定平行导线的电场(电场)。然而,对于通过栅格的传输,廉价的波导模拟器对于预测垂直于栅格的电场在不同角度的传输是必不可少的。
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Polarization selective reflectors for spacecraft applications
The design and development of a K-band polarization selective reflector (PRS) system are discussed. Waveguide simulator measurements showed close agreement with parallel wire theory. The radiation pattern measurements of PSR demonstrated almost complete reflection in one polarization with excellent cross-polarization isolation. An offset reflector configuration was chosen for the investigation because it is a compact versatile design for spacecraft applications. Transmissivity tests demonstrated that there is no significant change in the principal polarization patterns of the solid reflector with the PSR placed in front of the solid. The cross-polarization level is lower with the PSR in place. The measurements also demonstrated that the waveguide simulator is an essential tool in the design of grid reflectors. The excellent correlation between measured and calculated performance of reflected energy from parallel wires indicates that an experiment is not necessary to determine the electric field (E-field) parallel to the wires. However, for transmission through the grid, the inexpensive waveguide simulator is indispensable for predicting transmission at various angles for an E-field perpendicular to the grid.<>
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