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Development of a High-Stability Microstrip-based L-band Radiometer for Ocean Salinity Measurements

机译:基于海洋盐度测量的高稳定性微带L波段辐射计的开发

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摘要

The development of a microstrip-based L-band Dicke radiometer with the long-term stability required for future ocean salinity measurements to an accuracy of 0.1 psu is presented. This measurement requires the L-band radiometers to have calibration stabilities of less than or equal to 0.05 K over 2 days. This research has focused on determining the optimum radiometer requirements and configuration to achieve this objective. System configuration and component performance have been evaluated with radiometer test beds at both JPL and GSFC. The GSFC testbed uses a cryogenic chamber that allows long-term characterization at radiometric temperatures in the range of 70 - 120 K. The research has addressed several areas including component characterization as a function of temperature and DC bias, system linearity, optimum noise diode injection calibration, and precision temperature control of components. A breadboard radiometer, utilizing microstrip-based technologies, has been built to demonstrate this long-term stability.
机译:提出了基于微带的L波段Dicke辐射计的开发,该计具具有未来海洋盐度测量所需的长期稳定性,精度为0.1 psu。此测量要求L波段辐射计在2天内具有小于或等于0.05 K的校准稳定性。这项研究的重点是确定实现此目标的最佳辐射计要求和配置。系统配置和组件性能已通过JPL和GSFC的辐射计测试台进行了评估。 GSFC测试台使用低温腔室,可以在70-120 K的辐射温度下进行长期表征。该研究涉及多个领域,包括随温度和DC偏置而变化的组件表征,系统线性,最佳噪声二极管注入标定和精确的组件温度控制。利用基于微带技术的面包板辐射计已经建立,以证明这种长期稳定性。

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