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Near-space vehicle in monitoring Qinghai-Tibetan Plateauenvironmental changes

机译:近空间车辆监测青海藏户户环境变化

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Remote sounding of the atmosphere by global positioning system (GPS) radio occultation utilising a GPS satellite and a receiver aboard a low Earth orbiting (LEO) satellite has been proved successful in providing accurate profiles of atmospheric refractivity and water vapor. This technology has generated great interest in atmospheric and climate research communities. The technology is more suitable to monitor the environmental changes in the Qinghai-Tibetan Plateau than space borne GPS occultation. Unlike space borne and airborne GPS occultation, near-space vehicle lies inside the atmosphere, hence the conventional inversion algorithm cannot be applied and new algorithm must be developed. The potential for inversion scheme is exploited.
机译:通过全球定位系统(GPS)无线电掩星利用GPS卫星和接收器的远程探测船舶的无线电掩星,已经证明了在提供大气折射率和水蒸气的准确轮廓方面取得了成功。这项技术对大气和气候研究社区产生了极大的兴趣。该技术更适合监测青藏高原的环境变化,而不是太空传播的GPS弥补。与太空和空气传播的GPS掩星不同,近空间车辆位于大气内,因此不能应用传统的反演算法,并且必须开发新的算法。利用反转方案的潜力。

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