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A correlated noise calibration standard for interferometric, polarimetric, and autocorrelation microwave radiometers

机译:干涉式,偏振式和自相关微波辐射计的相关噪声校准标准

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摘要

A new type of calibration standard is presented which produces a pair of microwave noise signals to aid in the characterization and calibration of correlating radiometers. The Correlated Noise Calibration Standard (CNCS) is able to generate pairs of broad bandwidth stochastic noise signals with a wide variety of statistical properties. The CNCS can be used with synthetic aperture interferometers to generate specific visibility functions. It can be used with fully polarimetric radiometers to generate specific third and fourth Stokes parameters of brightness temperature. It can be used with spectrometers to generate specific power spectra and autocorrelations. It is also possible to combine these features and, for example, to generate the pair of signals that would be measured by a fully polarimetric, spectrally resolving, synthetic aperture radiometer at a particular pair of polarizations and antenna baselines for a specified scene over a specified frequency band. Algorithms are presented to construct signals with the desired statistical properties. Also presented is a description of the key hardware design challenges that were associated with fabrication of the first unit. CNCS performance is demonstrated by characterization tests of a pair of microwave interferometer radiometer receivers.
机译:提出了一种新型的校准标准,该标准会产生一对微波噪声信号,以帮助对相关辐射计进行表征和校准。相关噪声校准标准(CNCS)能够生成具有多种统计特性的成对的宽带随机噪声信号。 CNCS可以与合成孔径干涉仪一起使用,以生成特定的可见性功能。它可以与全偏振辐射计一起使用,以生成特定的亮度温度的第三和第四斯托克斯参数。它可以与光谱仪一起使用以生成特定的功率谱和自相关。也可以组合这些特征,例如,生成信号对,该信号对将通过全极化,频谱分辨,合成孔径辐射计在特定的一对极化和特定条件下的特定场景的天线基线处进行测量频带。提出了用于构建具有所需统计特性的信号的算法。还介绍了与第一单元制造相关的关键硬件设计挑战。一对微波干涉仪辐射计接收机的特性测试证明了CNCS性能。

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