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1)  lidar ratio
激光雷达比
1.
It is found that the non-sphericality has an obvious impact on lidar ratios.
对探测大气气溶胶粒子的激光雷达的关键参数-激光雷达比问题进行了讨论,以一种典型的集合状态(一般大陆型气溶胶粒子)为例,分析计算了几种典型湿度下非球形气溶胶粒子在0。
2.
It is found that lidar ratios depend strongly on physical and optical properties of particles,and they could be very different for various types of particles.
对探测大气气溶胶和云雾粒子的激光雷达的关键参量———激光雷达比问题进行了详细的讨论,利用实际大气气溶胶和云雾粒子的光学特性对0。
2)  lidar
激光雷达
1.
SO_2 measurements near the power plant with mobile lidar;
车载测污激光雷达电厂周边SO_2测量研究
2.
PBL observations by lidar at Peking;
北京城区大气边界层的激光雷达观测
3.
Current Status and Prospects of Helicopter Power Line Inspection Tour with LIDAR;
激光雷达直升机巡线技术的现状与应用前景
3)  laser radar
激光雷达
1.
All-fiber laser radar at 1.55 μm for speed measurement;
基于1.55μm的全光纤测速激光雷达
2.
Real-time obstacle avoidance for mobile robots strategy based on laser radar;
基于激光雷达的移动机器人实时避障策略
3.
Performance analysis of target detection in a laser radar;
激光雷达的目标检测性能分析
4)  laser scanner
激光雷达
1.
Detection of dynamic obstacles for mobile robot with laser scanner;
基于激光雷达的移动机器人动态障碍检测
2.
Study on obstacles detection of mobile robot based on laser scanner;
基于激光雷达的移动机器人障碍测距研究
3.
Aiming at estimating location of intelligent vehicle in an urban environment,a laser scanner was used to detect and extract the position of the center of each cylindrical landmark.
为解决智能车辆在城市环境中的定位问题,使用激光雷达检测和提取圆柱形路标的中心位置,并与已知地图进行数据关联;以CyberC3智能车辆为移动平台,建立了车辆运动模型和传感器测量模型,使用扩展卡尔曼滤波算法对激光雷达和编码器数据进行融合,计算车辆的全局位姿。
5)  Ladar
激光雷达
1.
The System of 3D LADAR Base on FM/CW Principles;
基于调频连续波原理的三维成像激光雷达系统
2.
Investigation into the High-speed Pulsed Laser Diode 3D-imaging Ladar;
脉冲半导体激光器高速三维成像激光雷达研究
3.
Obstacle Detection with Multilayer Ladar in Rough Terrain
多线激光雷达越野环境障碍检测
6)  Laser range finder
激光雷达
1.
Laser range finder has been widely used in map building, locating and tracking in Robotics.
激光雷达已被广泛应用于移动机器人地图构建、定位以及跟踪等任务。
2.
The data fusion method for laser range finder and camera can revise, fuse the information of laser range finder and camera to make the process of checking and recognizing target more easily and increase the accuracy rate.
本文提出的对激光雷达和摄像头各自所获得的信息进行融合的方法能利用从激光雷达和摄像头所获得的深度图象和光学图象,相互校正、融合,使目标的检测和识别过程变得相对简单,准确率提高。
补充资料:差示吸收激光雷达技术
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性质:一种基于非直接散射的遥感技术。先发出一束与被测物质吸收波长相同的激光,激光被被测物质吸收之后散射回来,再发出一束波长与前一束激光波长接近的,但不被被测物质吸收或吸收很弱的激光,在前一束激光同样条件下散射回来,两次测得的信号之差,反映了被测物质的平均浓度。它的优点是信号强,灵敏度比拉曼散射提高4个数量级。此种技术可用于大气污染物的监测。

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