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Calibration and applications of polarization-correlating radiometers

机译:偏振相关辐射计的校准和应用

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摘要

Hardware and associated software for nonmechanical rotation of the polarization basis of a dual linearly polarized cross-correlating radiometer are demonstrated. The technique requires precise measurement of two orthogonal-mode antenna temperatures along with cross-correlation of the two orthogonal-mode field amplitudes. Collectively, these are the first three Stokes parameters. A polarized blackbody load was developed for accurate calibration of the orthogonal-mode and cross-correlating channels. Using the hardware, rotation of the radiometer antenna's polarization basis by a matrix transformation was demonstrated by 91.65 GHz near-Brewster-angle scans of a polarizing water surface. The experimental results demonstrate the viability of the rotation technique and suggest practical calibration schemes for airborne and spaceborne polarimetric radiometers. Application of the rotation technique in mechanically scanned polarization-sensitive imaging radiometers will eliminate polarization coupling inherent in conventional fixed-feed dual-polarization scanner designs.
机译:演示了用于双线性偏振互相关辐射计的偏振基础的非机械旋转的硬件和相关软件。该技术需要精确测量两个正交模式天线的温度以及两个正交模式场振幅的互相关。总之,这是前三个Stokes参数。开发了极化的黑体负载,用于精确校准正交模式和互相关通道。使用硬件,通过对极化水表面进行91.65 GHz近布鲁斯特角扫描,证明了矩阵变换对辐射计天线极化方向的影响。实验结果证明了旋转技术的可行性,并提出了机载和星载极化辐射计的实用校准方案。在机械扫描的偏振敏感型成像辐射计中使用旋转技术将消除传统的固定进给双偏振扫描仪设计中固有的偏振耦合。

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