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Analog-digital conversion signal-to-noise ratio analysis for synthetic aperture interferometric radiometer

机译:合成孔径干涉辐射计的模数转换信噪比分析

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摘要

A nontrivial analog-digital conversion (ADC) signal-to-noise ratio (SNR) analysis for synthetic aperture interferometric radiometers for microwave remote sensing is presented. Correlation uncertainty is a key issue in the digital processing of radiometric signals. The ADC digitizes the analog intermediate frequency signal to perform digital correlations, hence the ADC noise is critical for radiometric performance, but this effect has lacked sufficient analysis. First, the ADC SNR requirement is drawn, and ADC SNR degradation is attributed to input noise, quantization noise, and sampling jitter. Second, it is proved that the input and the quantization noise have negligible effects on visibility uncertainty. Third, it is shown that the sampling jitter should be stringently controlled by Gaussian noise digitization SNR requirement. The sampling clock jitter is the dominant contributor in jitter caused SNR, and is evaluated by the long-term statistical time interval error jitter. Finally, the sampling jitter, the realized ADC SNR ratio and visibility uncertainties are tested on BHU-2D-U radiometer to verify the demonstrations. The analysis results can be used as a guideline in the digital correlation design of polarimetric or synthetic aperture radiometric systems. (C) 2014 Society of Photo-Optical Instrumentation Engineers (SPIE)
机译:提出了用于微波遥感的合成孔径干涉辐射计的非平凡的模数转换(ADC)信噪比(SNR)分析。相关不确定性是辐射信号数字处理中的关键问题。 ADC将模拟中频信号数字化以执行数字相关,因此ADC噪声对于辐射测量性能至关重要,但是这种影响缺乏足够的分析。首先,得出ADC SNR要求,并将ADC SNR降低归因于输入噪声,量化噪声和采样抖动。其次,证明了输入和量化噪声对可见度不确定性的影响可以忽略。第三,表明采样抖动应由高斯噪声数字化SNR要求严格控制。采样时钟抖动是造成抖动的SNR的主要因素,并通过长期统计时间间隔误差抖动进行评估。最后,在BHU-2D-U辐射计上测试了采样抖动,已实现的ADC SNR比和可见度不确定性,以验证演示。分析结果可以用作偏振或合成孔径辐射测量系统的数字相关设计的指南。 (C)2014年光电仪器工程师协会(SPIE)

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