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A millimeter and sub-millimeter wave multi-channel quasi-optical system for microwave radiometer

机译:微波辐射计毫米波和亚毫米波多通道准光学系统

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摘要

In millimeter and sub-millimeter waveband, the quasi-optical multiplexer with very low loss utilized quasi-optical technology also known as Gaussian beam technology could achieve that the detection beams of different frequencies and different polarization share the same transmission path. The quasi-optical multiplexer used to separate the multi-channel beams is composed by number of discrete components, which are combinated according to the pre-designed optical layout, such as beam convergence devices, beam separation devices and feed horns. The five-channel quasi-optical multiplexer are developed and designed in this paper. The operating frequency bands include 54, 118, 183, 380 and 425GHz. the “separating waveband” and “separating polarization” program are developed for the quasi-optical systems. Based the separating beams programs, relativing optical layouts are designed to obtain compact structure and good electrical performances of quasi-optical systems.
机译:在毫米和亚毫米波段,具有极低损耗的准光学多路复用器利用准光学技术(也称为高斯光束技术)可以实现不同频率和不同偏振的检测光束共享相同的传输路径。用于分离多通道光束的准光学多路复用器由许多离散组件组成,这些组件根据预先设计的光学布局进行组合,例如光束会聚设备,光束分离设备和馈电喇叭。本文设计开发了五通道准光多路复用器。工作频带包括54、118、183、380和425GHz。为准光学系统开发了“分离波段”和“分离偏振”程序。基于分离光束程序,设计了相对的光学布局,以获得紧凑的结构和准光学系统的良好电性能。

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