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Comparsion of different microwave radiometric calibration techniques

机译:不同微波辐射校准技术的比较

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We compare three techniques typically used for calibrating a microwave radiometer and understanding its design stability. The first calibration technique utilizes cold and hot load measurements to construct calibration curves. For our case, we used sky as the cold load and microwave absorber at ambient temperature as hot load. The second calibration technique utilizes measurements of the brightness temperature of the sky at various zenith angles to determine the atmospheric opacity needed for the calibration curves. The third calibration technique utilizes measurements of internal reference load and micro-controller inside the radiometer at both polarizations to estimate the system gain fluctuations and the receiver noise temperatures. We calibrated our University of Florida C-band Microwave Radiometer (UFCMR) every two weeks during the first Microwave Water and Energy Balance Experiment (MicroWEX-1). We found that, the first and third techniques produced similar calibration results with 1 Kelvin/volt standard deviation. However, the third technique was the most stable during the entire experiment with the smallest standard deviations which were 2.41 Kelvin/volt for the slope of the calibration curves at H-pol and 7.46 Kelvin/volt for the slope of the calibration curves at V-pol during MicroWEX-1.
机译:我们比较三种技术用于校准微波辐射计并理解其设计稳定性的技术。第一校准技术利用冷和热负荷测量来构建校准曲线。对于我们的案例,我们在环境温度下使用天空作为冷载和微波吸收器,作为热负荷。第二校准技术利用各种天顶角度的天空亮度温度的测量来确定校准曲线所需的大气不透明度。第三校准技术利用在两极化的辐射计内部的内部参考负载和微控制器的测量来估计系统增益波动和接收器噪声温度。在第一次微波水和能量平衡实验(MicroWex-1)期间,我们每两周校准我们的佛罗里达大学C波段微波辐射计(UFCMR)。我们发现,第一个和第三种技术产生了类似的校准结果与1个开尔文/伏尔标准偏差。然而,第三种技术在整个实验中是最稳定的,最小的标准偏差为2.41 kelvin /伏特,用于在H-POL的校准曲线的斜率和7.46 kelvin /伏特,用于校准曲线的斜率在V-在microk-1期间pol。

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