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Systems Engineering Tradeoffs for a Bio-Aerosol Lidar Referee System

机译:生物气溶胶激光雷达系统的系统工程权衡

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Analytical results and tradeoffs are reported for an aerosol lidar system that is intended to serve as a referee during testing of standoff bio-aerosol detection systems. The lidar system is still under development by Dugway Proving Grounds-results from the operational system are not included in this paper. The recommended configuration of the lidar system is to use a 1064 nm lidar in elastic mode to measure the concentration of the aerosol, and a 355 nm excitation to measure the fluorescence of the bio-aerosol. Both of these measurements are important in scoring the performance of the systems that will be tested at DPG. Performance tradeoffs and predictions are presented primarily for the elastic mode lidar. The elastic mode lidar is designed to make measurements out to ranges of approximately 15 km. The UV fluorescence mode of operation is intended to support discrimination of bio-aerosols from non-biological aerosols, and is only required to operate at a range of 1 km. The optical design of the proposed telescope supports dual wavelength operation, allows for effective TV camera imaging for test and alignment support, and tailors the optical overlap function for the UV and near IR lidar to optimize the performance of both subsystems.
机译:据报告分析结果和权衡为气溶胶激光乐队系统,该系统旨在作为裁判在测试宿舍生物气溶胶检测系统的测试期间。 LIDAR系统仍在开发下,耐力在开发的情况下 - 运营系统的结果不包括在本文中。推荐的LIDAR系统的配置是在弹性模式下使用1064nm激光雷达来测量气溶胶的浓度,以及测量生物气溶胶的荧光的355nm激发。这两种测量都在评分将在DPG测试的系统的性能方面很重要。性能权衡和预测主要用于弹性模式激光雷达。弹性模式LIDAR旨在使测量值大约15公里。 UV荧光操作模式旨在支持来自非生物气溶胶的生物气溶胶的辨别,并且仅需要在1公里的范围内操作。所提出的望远镜的光学设计支持双波长操作,允许有效的电视摄像机成像进行测试和对准支撑,并为UV和靠近IR LIDAR定制光学重叠功能,以优化两个子系统的性能。

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