首页> 外文OA文献 >CARBON DIOXIDE LASER RADAR FOR MONITORING ATMOSPHERIC TRANSMITTANCE AND THE ATMOSPHERIC AEROSOL (REMOTE SENSING, INFRARED).
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CARBON DIOXIDE LASER RADAR FOR MONITORING ATMOSPHERIC TRANSMITTANCE AND THE ATMOSPHERIC AEROSOL (REMOTE SENSING, INFRARED).

机译:二氧化碳激光雷达,用于监测大气透过率和大气气溶胶(遥感,红外)。

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摘要

An incoherent CO₂ laser radar, or lidar, system using a tunable CO₂ TEA laser has been developed, along with analytical techniques to permit the determination of atmospheric transmittance and aerosol backscatter from multi-angle lidar returns. This work has been motivated by the need for a more complete knowledge of the optical properties of the atmosphere in the 9 to 11 μm spectral region. Results of preliminary observations are discussed. CO₂ lidar systems have been used before to measure backscatter and transmittance. Here, a new analytic method is developed, applicable to the 8-12 μm window region in conditions of high visibility, when the aerosol component of extinction is negligible compared to the molecular component. In such cases the backscatter sensed by the system is due to the atmospheric aerosol while atmospheric transmittance is determined by molecular species such as carbon dioxide and water vapor. It is not possible to assume a functional relationship between backscatter and extinction, as required by many previous analytic techniques. Therefore, a new solution technique based on a weighted, non-linear least squares fit applied to multi-zenith angle lidar returns has been developed. It is shown how constraints may be applied to rule out solutions which are unlikely on a priori grounds. An error analysis and a discussion of proper weighting techniques are presented. A CO₂ lidar system capable of acquiring multi-angle returns was developed, which included a gain-switching amplifier to compress the dynamic range of the return signal. The entire system is operated under computer control and data acquisition and storage are fully automated. A laser pulse energy monitor allows sequential returns to be averaged to reduce signal fluctuations. Preliminary observations with the system have demonstrated the capability of acquiring and averaging hundreds of returns on a routine basis. The return signal was observed to have fluctuations of 20 to 50% from shot to shot, due to atmospheric fluctuations. This result indicates signal averaging will be necessary to reduce signal fluctuations to levels where the multi-angle solution method may be applied.
机译:已经开发了使用可调谐CO 2 TEA激光器的非相干CO 2激光雷达或激光雷达系统,以及分析技术,该技术可以确定来自多角度激光雷达返回的大气透射率和气溶胶反向散射。这项工作的动机是需要对9至11​​μm光谱区域中的大气的光学特性有更全面的了解。讨论了初步观察的结果。以前已经使用过CO2激光雷达系统来测量反向散射和透射率。在此,开发了一种新的分析方法,该方法适用于在高可见度条件下,与分子组分相比可忽略不计的气溶胶组分,适用于8-12μm窗口区域。在这种情况下,系统感测到的反向散射是由于大气中的气溶胶引起的,而大气透过率则取决于诸如二氧化碳和水蒸气之类的分子种类。像许多以前的分析技术所要求的那样,不可能假设反向散射和消光之间存在功能关系。因此,已经开发了一种基于加权非线性最小二乘拟合的新求解技术,该拟合应用于多天顶角激光雷达返回。它显示了如何将约束应用于排除先验不可能的解决方案。给出了错误分析和适当加权技术的讨论。开发了一种能够获取多角度回波的CO2激光雷达系统,该系统包括一个增益切换放大器,用于压缩回波信号的动态范围。整个系统在计算机控制下运行,数据采集和存储是全自动的。激光脉冲能量监控器允许对顺序返回进行平均,以减少信号波动。对系统的初步观察表明,可以例行获取和平均数百个回报。由于大气波动,返回信号在每次发射之间波动有20%到50%。该结果表明,必须进行信号平均才能将信号波动降低到可以应用多角度求解方法的水平。

著录项

  • 作者

    WINKER DAVID MICHAEL.;

  • 作者单位
  • 年度 1984
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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