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Optical Autocovariance Wind Lidar (OAWL): aircraft test-flight history and current plans

机译:光学自动控制风潮羊达(OAWL):飞机试验飞行历史和当前计划

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To address mission risk and cost limitations the US has faced in putting a much needed Doppler wind lidar into space, Ball Aerospace and Technologies Corp, with support from NASA's Earth Science Technology Office (ESTO), has developed the Optical Autocovariance Wind Lidar (OAWL), designed to measure winds from aerosol backscatter at the 355 nm or 532 nm wavelengths. Preliminary proof of concept hardware efforts started at Ball back in 2004. From 2008 to 2012, under an ESTO-funded Instrument Incubator Program, Ball incorporated the Optical Autocovariance (OA) interferometer receiver into a prototype breadboard lidar system by adding a laser, telescope, and COTS-based data system for operation at the 355 nm wavelength. In 2011, the prototype system underwent ground-based validation testing, and three months later, after hardware and software modifications to ensure autonomous operation and aircraft safety, it was flown on the NASA WB-57 aircraft. The history of the 2011 test flights are reviewed, including efforts to get the system qualified for aircraft flights, modifications made during the flight test period, and the final flight data results. We also present lessons learned and plans for the new, robust, two-wavelength, aircraft system with flight demonstrations planned for Spring 2016.
机译:要地址使命风险和美国面临的将急需的多普勒测风激光雷达到太空的成本限制,鲍尔航天和技术公司,从美国航空航天局的地球科学技术办公室(ESTO)的支持,开发了光学计算相关测风激光雷达(OAWL)设计在355纳米或532种纳米波长测量来自反向散射气雾剂风。在回球在2004年从2008年到2012开始的概念硬件的努力,初步证明在加入了激光,望远镜结合光学自协方差(OA)干涉仪接收器插入一个原型线路板激光雷达系统的ESTO资助仪孵化器项目,球,和基于COTS的数据系统,用于操作在355纳米波长。 2011年,该原型系统经过地面验证测试,三个月以后,在硬件和软件的修改,以确保自主运行和飞机的安全性,它飞行的NASA WB-57飞机。的2011飞行试验的历史进行了综述,包括努力得到合格的飞机航班,在飞行测试期间进行的修改,而最终的飞行数据结果的系统。我们还提出经验教训和新的,强大的,双波长,飞机系统计划于春季2016飞行表演的计划。

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