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Tethered Balloon-Based Experiment of Surface Water Height Using Satellite Signals of Opportunity

机译:基于机会信号卫星的基于束缚气球的地表水高度实验

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Signals of Opportunity (SoOp) is an area of radio science that leverages existing ambient signals from spacecraft, aircraft, and ground-based radio systems to perform radio science without spending time or resources constructing new transmission infrastructure. It has been conceptualized that SmallSats or CubeSats can perform similar SoOp missions by augmenting pre-existing spacecraft missions - specifically radio/radar missions. During the summer of 2019, student-interns at the National Aeronautics and Space Administration's (NASA) Jet Propulsion Laboratory (JPL) under the Innovation to Flight (i2F) program tested the first airborne SoOp demo via a tethered aerostat - a valuable step towards getting a SoOp demo in orbit. The airborne SoOp demo received direct and bounced signals from multiple geosynchronous equatorial orbit (GEO) satellites by using two on-board wide-band grid antennas. One antenna was pointed at the sky at appropriate azimuth and elevation angles to receive a direct GEO signal. The other antenna was pointed at an identical azimuth angle with a mirrored elevation angle so as to receive the same GEO signal reflected from a body of water below. Both antennas were secured on adjustable mounts to allow for pointing changes and permit data collection from multiple satellites. This initial test proves the scientific and technological feasibility of doing further airborne SoOp tests, potentially on aircraft, unmanned aerial vehicles (UAV), high altitude balloons (HAB), and SmallSats or CubeSats.
机译:机会信号(SoOp)是无线电科学领域,它利用来自航天器,飞机和地面无线电系统的现有环境信号来执行无线电科学,而无需花费时间或资源来构建新的传输基础结构。人们已经概念化了,SmallSat或CubeSats可以通过增加预先存在的航天器任务(特别是无线电/雷达任务)来执行类似的SoOp任务。在2019年夏季,美国国家航空航天局(NASA)喷气推进实验室(JPL)的创新飞行计划(i2F)计划下的实习生通过系留浮空器测试了首个机载SoOp演示-这是迈向获得成功的重要一步SoOp演示在轨。机载SoOp演示通过使用两个机载宽带网格天线从多个地球同步赤道轨道(GEO)卫星接收直接和反射信号。一个天线以适当的方位角和仰角指向天空,以接收直接的GEO信号。另一个天线指向相同的方位角,并具有镜像的仰角,以便接收从下方水体反射的相同GEO信号。两个天线都固定在可调节的支架上,以允许指向变化并允许从多个卫星收集数据。这项初始测试证明了进一步进行机载SoOp测试的科学和技术可行性,这些测试可能在飞机,无人飞行器(UAV),高空气球(HAB)以及SmallSats或CubeSats上进行。

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