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Design and performance of a high-stability water vapor radiometer

机译:高稳定性水蒸气辐射计的设计与性能

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The design of two new high-stability microwave water vapor radiometers is presented along with a performance evaluation. The radiometers operate next to a spacecraft tracking station at NASA's Goldstone facility in California, where they will be used to calibrate tropospheric path delay fluctuations during an upcoming gravity-wave search experiment (GWE) involving the Cassini spacecraft. Observing frequencies of the radiometers are 22.2, 23.8, and 31.4 GHz, and the antenna beam width is 1°. The instruments are room temperature Dicke radiometers with additive noise injection for gain calibration. Design highlights include: (1) a practical temperature control system capable of stabilizing the entire receiver to a few millikelvin from day to night; (2) redundant noise diode injection circuits with 30 ppm RF power stability; and (3) a voice coil actuated waveguide vane attenuator which is used as a high-performance Dicke switch. Performance of the radiometers is evaluated from intercomparisons of the two radiometers and from continuous tip curve calibrations spanning nearly 1 year. Structure function analysis of the intercomparison data indicates that the brightness temperature stability of these radiometers is better than 0.01 K on 1000-10,000 s timescales. Analysis of tip curve calibrations indicates RMS errors of ~0.05 K on 30-day timescales and 0.15 K on 1-year timescales.
机译:介绍了两个新的高稳定性微波水蒸气辐射计的设计以及性能评估。辐射计在位于美国加利福尼亚州NASA的戈德斯通设施的航天器跟踪站旁边运行,在即将进行的涉及卡西尼号航天器的重力波搜索实验(GWE)中,辐射计将用于校准对流层路径延迟波动。辐射计的观测频率为22.2、23.8和31.4 GHz,天线波束宽度为1°。仪器是室温Dicke辐射计,带有附加噪声注入,用于增益校准。设计重点包括:(1)实用的温度控制系统,能够将整个接收器从白天到晚上稳定在几毫克。 (2)具有30 ppm RF功率稳定性的冗余噪声二极管注入电路; (3)用作高性能Dicke开关的音圈驱动的波导叶片衰减器。辐射计的性能通过两个辐射计的比对和连续近1年的尖端曲线校准进行评估。对比数据的结构函数分析表明,这些辐射计的亮度温度稳定性在1000-10,000 s时标上优于0.01K。尖端曲线校准分析表明,RMS误差在30天时标上为〜0.05 K,在1年时标上为0.15K。

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