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Sensing of radio refractivity and aerosol extinction

机译:无线电折射和气溶胶消光的感应

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摘要

Sensing of radio refractivity has historically been accomplished with direct sensing techniques such as radiosondes. While direct sensing techniques provide good data for propagation assessment purposes, remotely sensed data would be more desirable. Various direct and remote sensing techniques and an assessment of their potential operational usefulness are reviewed. Included are radiosondes, refractometers, radar sounders, lidars, satellite-based sensors, radiometric and radio propagation techniques. The need for and feasibility of providing three-dimensional, time-varying refractivity fields for propagation assessment are addressed. Aerosol extinction is often the atmospheric parameter limiting electrooptical systems performance. For proper performance assessment, slant path extinction must be known. For several decades, attempts have been made to infer aerosol extinction from lidar backscatter measurements. A discussion of selected lidar techniques and their limitations is presented.
机译:无线电折射率的感测历史上已经通过诸如无线电探空仪之类的直接感测技术完成。尽管直接感测技术为传播评估目的提供了良好的数据,但更需要遥感数据。审查了各种直接和遥感技术以及对它们的潜在操作有用性的评估。包括无线电探空仪,折光仪,雷达测深仪,激光雷达,基于卫星的传感器,辐射测量和无线电传播技术。解决了为传播评估提供三维时变折射率场的需求和可行性。气溶胶的熄灭通常是限制电光系统性能的大气参数。为了进行正确的性能评估,必须知道倾斜路径的熄灭。几十年来,人们一直在尝试通过激光雷达反向散射测量来推断气溶胶的灭绝。讨论了选定的激光雷达技术及其局限性。

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