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Airborne forward-pointing UV Rayleigh lidar for remote clear air turbulence detection: system design and performance

机译:机载前向紫外线瑞利激光雷达,用于远程清除空气湍流:系统设计和性能

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摘要

A high-performance airborne UV Rayleigh lidar system was developed within the European project DELICAT. With its forward-pointing architecture, it aims at demonstrating a novel detection scheme for clear air turbulence (CAT) for an aeronautics safety application. Due to its occurrence in clear and clean air at high altitudes (aviation cruise flight level), this type of turbulence evades microwave radar techniques and in most cases coherent Doppler lidar techniques. The present lidar detection technique relies on air density fluctuation measurement and is thus independent of backscatter from hydrometeors and aerosol particles. The subtle air density fluctuations caused by the turbulent air flow demand exceptionally high stability of the setup and in particular of the detection system. This paper describes an airborne test system for the purpose of demonstrating this technology and turbulence detection method: a high-power UV Rayleigh lidar system is installed on a research aircraft in a forward-looking configuration for use in cruise flight altitudes. Flight test measurements demonstrate this unique lidar system being able to resolve air density fluctuations occurring in light-to-moderate CAT at 5 km or moderate CAT at 10 km distance. A scaling of the determined stability and noise characteristics shows that such performance is adequate for an application in commercial air transport.
机译:在欧洲DELICAT项目中开发了一种高性能的机载UV Rayleigh激光雷达系统。凭借其前瞻性架构,它旨在演示一种适用于航空安全应用的新型晴空湍流(CAT)检测方案。由于它在高海拔地区(航空巡航飞行高度)中的清洁空气中出现,因此这种类型的湍流规避了微波雷达技术,在大多数情况下还避开了相干多普勒激光雷达技术。当前的激光雷达检测技术依赖于空气密度波动的测量,因此独立于水凝物和气溶胶颗粒的反向散射。由湍流引起的细微的空气密度波动要求装置特别是检测系统具有极高的稳定性。本文介绍了一种用于演示该技术和湍流检测方法的机载测试系统:一种高功率UV瑞利激光雷达系统以前瞻性配置安装在研究飞机上,用于巡航飞行高度。飞行测试测量表明,这种独特的激光雷达系统能够解决5 km轻至中度CAT或10 km距离中度CAT时发生的空气密度波动。所确定的稳定性和噪声特性的按比例缩放表明,这种性能足以用于商业航空运输中。

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