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Development and experimental verification of a high resolution, tunable lidar computer simulation model for atmospheric laser remote sensing.

机译:用于大气激光遥感的高分辨率可调谐激光雷达计算机仿真模型的开发和实验验证。

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摘要

A computer program (LIDAR-PC) and associated atmospheric spectral databases have been developed which accurately simulate the laser remote sensing of the atmosphere and the system performance of a direct-detection Lidar or tunable Differential Absorption Lidar (DIAL) system. This simulation program allows, for the first time, the use of several different large atmospheric spectral databases to be coupled with Lidar parameter simulations on the same computer platform to provide a real-time, interactive, and easy to use design tool for atmospheric Lidar simulation and modeling. LIDAR-PC has been used for a range of different Lidar simulations and compared to experimental Lidar data. In general, the simulations agreed very well with the experimental measurements. In addition, the simulation offered, for the first time, the analysis and comparison of experimental Lidar data to easily determine the range-resolved attenuation coefficient of the atmosphere and the effect of telescope overlap factor. The software and databases operate on an IBM-PC or compatible computer platform, and thus are very useful to the research community for Lidar analysis.;The complete Lidar and atmospheric spectral transmission modeling program uses the HITRAN database for high-resolution molecular absorption lines of the atmosphere, the BACKSCAT/LOWTRAN computer databases and models for the effects of aerosol and cloud backscatter and attenuation, and the range-resolved Lidar equation. The program can calculate the Lidar backscattered signal-to-noise for a slant path geometry from space and simulate the effect of high resolution, tunable, single frequency, and moderate line width lasers on the Lidar/DIAL signal.;The program was used to model and analyze the experimental Lidar data obtained from several measurements. A fixed wavelength, Ho:YSGG aerosol Lidar (Sugimoto, 1990) developed at USF and a tunable Ho:YSGG DIAL system (Cha, 1991) for measuring atmospheric water vapor at 2.1 ;Finally, an extensive series of laboratory experiments were made with the 1.57 ;The LIDAR-PC programs are available on the Internet from the USAF Lidar Home Page Web site, http://www.cas.usf.edu/physics/lidar.html/.
机译:已经开发了计算机程序(LIDAR-PC)和相关的大气光谱数据库,可以精确模拟激光对大气的遥感以及直接检测激光雷达或可调差分吸收激光雷达(DIAL)系统的系统性能。该仿真程序首次允许在同一个计算机平台上将几个不同的大型大气光谱数据库与Lidar参数仿真结合使用,以提供实时,交互式且易于使用的大气Lidar仿真设计工具和建模。 LIDAR-PC已用于一系列不同的Lidar模拟,并与实验性Lidar数据进行了比较。通常,模拟与实验测量非常吻合。此外,该模拟首次提供了对激光雷达实验数据的分析和比较,从而轻松确定了大气的距离分辨衰减系数和望远镜重叠因子的影响。该软件和数据库可在IBM-PC或兼容的计算机平台上运行,因此对研究机构进行激光雷达分析非常有用。完整的激光雷达和大气光谱传输建模程序使用HITRAN数据库获取了高分辨率的分子吸收谱线。大气,BACKSCAT / LOWTRAN计算机数据库和模型,以了解气溶胶和云的反向散射和衰减的影响,以及范围解析的激光雷达方程。该程序可以从空间中计算出倾斜路径几何形状的激光雷达反向散射的信噪比,并模拟高分辨率,可调谐,单频和中等线宽激光对激光雷达/ DIAL信号的影响。对通过几次测量获得的实验性激光雷达数据进行建模和分析。 USF开发了固定波长的Ho:YSGG气溶胶激光雷达(Sugimoto,1990)和可调谐的Ho:YSGG DIAL系统(Cha,1991),用于在2.1下测量大气水蒸气;最后,在实验室中进行了一系列广泛的实验室实验。 1.57;可从Internet上的USAF Lidar主页Web站点http://www.cas.usf.edu/physics/lidar.html/获得LIDAR-PC程序。

著录项

  • 作者

    Wilcox, William Edward, Jr.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Engineering Electronics and Electrical.;Physics Atmospheric Science.;Physics Optics.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 223 p.
  • 总页数 223
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:49:37

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