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All-weather microwave atmospheric sensing using CubeSats and constellations

机译:使用CubeSat和星座的全天候微波大气感测

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Microwave instrumentation is particularly well suited for implementation on a very small satellite, as the sensor requirements for power, pointing, and spatial resolution (aperture size) can in some cases be accommodated by a nanosatellite platform. The Microsized Microwave Atmospheric Satellite Version 2a (MicroMAS-2a), launched on January 11, 2018 and has demonstrated temperature sounding using channels near 118 GHz and humidity sounding using channels near 183 GHz. A second MicroMAS-2 flight unit (MicroMAS-2b) will be launched in late 2018 as part of ELANA-XX. The Time-Resolved Observations of Precipitation structure and storm Intensity with a Constellation of Smallsats (TROPICS) mission was selected by NASA in 2016 as part of the Earth Venture-Instrument (EVI-3) program. The overarching goal for TROPICS is to provide nearly all-weather observations of 3-D temperature and humidity, as well as cloud ice and precipitation horizontal structure, at high temporal resolution to conduct high-value science investigations of tropical cyclones. TROPICS will provide rapid-refresh microwave measurements (median refresh rate of approximately 40 minutes for the baseline mission) over the tropics that can be used to observe the thermodynamics of the troposphere and precipitation structure for storm systems at the mesoscale and synoptic scale over the entire storm lifecycle. TROPICS comprises a constellation of six CubeSats in three low-Earth orbital planes. Each CubeSat will host a high performance radiometer to provide temperature profiles using seven channels near the 118.75 GHz oxygen absorption line, water vapor profiles using three channels near the 183 GHz water vapor absorption line, imagery in a single channel near 90 GHz for precipitation measurements (when combined with higher resolution water vapor channels), and a single channel at 206 GHz that is more sensitive to precipitation-sized ice particles. TROPICS flight hardware development is on track for a 2019 delivery.
机译:微波仪器特别适合在非常小的卫星上实施,因为在某些情况下,纳米卫星平台可以满足对功率,指向和空间分辨率(孔径大小)的传感器要求。 2018年1月11日发射的第2a号超小型微波微波卫星(MicroMAS-2a)已演示了使用118 GHz附近信道的温度探测和使用183 GHz附近信道的湿度探测。作为ELANA-XX的一部分,第二个MicroMAS-2飞行单元(MicroMAS-2b)将在2018年末发射。美国国家航空航天局(NASA)在2016年选择了“具有小卫星星座的降水结构和风暴强度的时间分辨观测”(TROPICS)任务作为地球风险投资仪器(EVI-3)计划的一部分。 TROPICS的总体目标是在高时间分辨率下提供3-D温度和湿度以及云冰和降水水平结构的几乎全天候观测,以进行热带气旋的高价值科学研究。 TROPICS将在热带地区提供快速刷新的微波测量结果(基线任务的中位刷新率约为40分钟),可用于在整个中尺度和天气尺度上观测暴风系统的对流层热力学和降水结构风暴生命周期。 TROPICS由在三个低地球轨道平面上的六个立方体卫星组成。每台CubeSat都将配备一个高性能辐射计,以使用118.75 GHz氧气吸收线附近的七个通道提供温度曲线,使用183 GHz水蒸气吸收线附近的三个通道提供水蒸气曲线,在90 GHz附近的单个通道中提供影像以进行降水量测量( (与更高分辨率的水蒸气通道结合使用时),以及对降水量大小的冰粒更敏感的206 GHz单通道。 TROPICS飞行硬件开发有望在2019年交付。

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