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基于CCD成像法的激光光斑特性测量方法及装置研究
其他题名Research on the method and device for measuring the characteristics of laser spot based on CCD image
万凡
学位类型工程硕士
导师李语强 ; 赵劲松
2021
学位授予单位中国科学院大学
学位授予地点北京
学位专业光学工程
关键词光斑测量 CCD成像 漫反射 激光参数 激光测距
摘要在卫星激光测距系统中,经望远镜出射的激光光斑特性是决定测距成功与否的一个重要因素。为了准确掌握经望远镜出射的激光光斑特性,本文基于CCD成像法设计了一套测量1.2m望远镜出射激光光斑特性的装置。 文中详细给出了激光光斑的测量原理、测量装置的设计、光斑数据的处理方法,其中重点是对光斑测量装置的设计和数据处理方法的研究。在光斑测量装置的设计中,创造性的实现了CCD相机、能量计对同一帧幅光斑的图像和能量同时采集,仔细研究了漫反射屏光场的分布特性,充分考虑了CCD相机、能量计与出射激光束的光学匹配问题。最后在测量装置的安装过程中,还严格计算了相机距离漫反射屏的距离。 在光斑数据处理方法的研究中,巧妙的利用等环围面积法计算出了能量计像区域的灰度值。再根据能量计实测能量值,准确的计算出了实测能量值对光斑图像灰度值的能量定标系数。从而计算出了光斑的能量密度空间分布。再依据光斑半径的定义进一步计算出了激光各特性参数。本文还分析计算出了大气湍流和环形激光束的自由衍射对光斑测量值的影响。 最后根据所设计的光斑测量装置对云南天文台1.2m望远镜出射的激光束进行了光斑测量实验。计算出了经望远镜出射后的激光光斑半径、发散角、平均能量密度分布和传输效率等参数。实验结果表明:云南天文台1.2m望远镜激光发射系统工作状态正常、出射激光发散角较小、激光光束质量良好。同时也证明了所研制的光斑测量装置具有能量定标准确、响应速度快、操作简单、易于控制等优点,在激光光斑测量方面具有重要的应用前景。 关键词:光斑测量,CCD成像,漫反射,激光参数,激光测距
其他摘要In the satellite laser ranging system, the characteristics of the laser spot emitted through the telescope is a very important factor restricting the success of the ranging.In order to accurately grasp the characteristics of the laser spot emitted by the telescope, after extensively studying the common laser spot measurement methods ,such as: ablation method, photosensitive method, scanning method, CCD imaging method and array detector method, this article designed a device to measure the characteristics of the laser spot emitted by the 1.2m telescope based on CCD imaging method. In this paper, the principle of laser spot measurement, the design of the measuring device, and the processing method of the spot data are given in detail, and the focus is on the design of the spot measuring device and the study of the data processing method.In the design of the spot measuring device, the CCD camera and the energy meter were used to collect images and energy of the same laser spot at the same time. The distribution characteristics of the light field of the diffuse reflection screen were carefully studied, and the CCD camera and the energy meter were fully considered Optically matched to the outgoing laser beam.Finally, during the installation of the measuring device, the distance from the camera to the diffuse reflection screen was also strictly calculated. In the study of laser spot data processing methods, The gray value of the image area is calculated cleverly by the method of equal-circle area.According to the measured energy value of the energy meter, the energy calibration coefficient of the measured energy value to the gray value of the spot image is accurately calculated.The spatial distribution of the energy density of the light spot is also calculated by the energy scaling factor.Then, according to the definition of the spot radius, characteristic parameters of the spot are calculated.In addition, in the processing of spot data, this article also considers the influence of atmospheric turbulence and free diffraction of the ring laser beam on the measured value of the spot. Finally, according to the designed spot measuring device, the laser beam emitted from the 1.2-meter telescope was subjected to a spot measuring experiment.And the laser spot radius, divergence angle, average energy density distribution and other parameters after exiting through the telescope are calculated.The experimental results show that the 1.2-meter laser ranging system of Yunnan Observatory works normally, the laser divergence angle is small, and the laser beam quality is good.It also proves that the developed spot measuring device has the advantages of accurate energy standard, fast response speed, simple operation, easy control, etc.And the measurement method has important application prospects in laser spot measurement.Keywords:Spot measurement, CCD imaging,Diffuse reflection, Laser parameters, Laser Ranging
学科领域天文学 ; 天体测量学 ; 机械工程 ; 仪器仪表技术 ; 光学技术与仪器
学科门类理学 ; 理学::天文学 ; 工学 ; 工学::光学工程 ; 工学::仪器科学与技术
页数61
语种中文
文献类型学位论文
条目标识符http://ir.ynao.ac.cn/handle/114a53/25486
专题应用天文研究组
作者单位中国科学院云南天文台
第一作者单位中国科学院云南天文台
推荐引用方式
GB/T 7714
万凡. 基于CCD成像法的激光光斑特性测量方法及装置研究[D]. 北京. 中国科学院大学,2021.
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