首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到16条相似文献,搜索用时 156 毫秒
1.
纯转动拉曼法确定激光雷达几何因子   总被引:2,自引:0,他引:2  
提出了一种确定激光雷达几何重叠因子的新方法。研究了大气分子纯转动拉曼谱线强度分布特征。利用大气分子总的纯转动拉曼激光雷达信号结合瑞利-米氏散射激光雷达信号能精确反演激光雷达几何因子。这种方法消除了振动拉曼方法中气溶胶波长指数影响以及水平测量法气溶胶非均匀性的限制。数值模拟结果表明:在大气温度三种分布模型和气溶胶波长指数三种分布模型下几何因子反演的最大相对误差小于0.5%。根据实际激光雷达信号反演得到了系统的几何因子。  相似文献   

2.
非共轴激光雷达系统参数对几何因子的影响   总被引:1,自引:0,他引:1  
介绍了非共轴激光雷达几何因子的物理意义,通过数值模拟分析了激光雷达各系统参数包括:激光发散角、接收视场角、光轴间距、光轴失调夹角对几何因子的影响。结果表明:光轴离轴失调对激光雷达影响最大,在系统设计时应极力避免。结合自行研制的CSY2型能见度激光雷达,将理论计算与实验测量值进行对比,实验结果表明两种计算结果基本一致。  相似文献   

3.
光束品质因子M2对非同轴激光雷达探测性能的影响   总被引:1,自引:0,他引:1  
高飞  华灯鑫  吴敏  毛建东  周毅 《光学学报》2008,29(9):1649-1654
光束品质因子M2直接影响高斯光束传播特性,光纤口径主要约束激光雷达接收系统的视场角.几何重叠因子是影响激光雷达探测性能的重要参量,其主要受激光束的发射特性、接收系统的结构等影响.通过探讨光束品质因子M2及耦合光纤口径对几何重叠因子的影响,为设计激光雷达发射接收系统,改善激光雷达的探测性能提供了优化方案.数值计算及初步实验表明,光纤的耦合效率与光纤的放置位置及光纤口径有很大的关系;几何重叠因子小于1的探测距离受到M2因子的较大影响且随着M2因子的增大而增大.  相似文献   

4.
利用研制的探测大气二氧化碳廓线的振动拉曼激光雷达系统采集的氮气分子振动拉曼散射信号,结合激光雷达探测时的大气消光数据,反演求出激光雷达的几何因子曲线。并对气溶胶波长指数变化对振动拉曼信号反演几何因子造成的影响进行分析与估算。气溶胶消光波长指数变化对振动拉曼散射信号反演几何因子会带来较大的误差影响。当气溶胶消光波长指数或其谱分布确定时,振动拉曼散射信号反演几何因子具有简便、可靠等优点,在振动拉曼激光雷达系统几何因子确定中可以充分应用此方法。  相似文献   

5.
基于几何分析,将离轴激光雷达在近距离范围内望远镜视场与发射激光分布的交叠区分为三种形状,并给出了计算离轴激光雷达重叠因子的解析计算公式.基于该公式和发射激光的高斯分布得到了本实验室Mie散射激光雷达重叠因子随高度的变化曲线.利用该曲线对成都地区在不同天气状况下的雷达回波信号进行了校正.在此基础上,利用Klett算法对校正后的回波信号进行了反演,得到了532 nm波长大气消光系数随高度的变化曲线.结果表明,基于文中校正方法得到的大气消光系数能反映实际的天气情况. 关键词: 离轴雷达 重叠因子 高斯模式  相似文献   

6.
基于雷达光学系统的几何概率因子,考虑望远镜接收系统副镜在主镜上的投影对激光光斑高斯强度分布的影响,引入蒙特卡罗积分法,改进离轴激光雷达几何因子的理论计算方法.在望远镜焦平面处添加合适的透镜,通过透镜的成像效应,保证回波信号的入射光瞳只与望远镜的口径有关,不受探测器有效接收面积的影响,以实现对系统几何因子的进一步优化,并分析焦距等透镜参数对雷达系统几何因子的影响.理论计算与实验结果进行对比,结果表明改进后的理论计算值比实验值的相对误差减小了30%,改进后的理论计算方法效果理想且简单易行.  相似文献   

7.
《光散射学报》2017,(4):367-371
为了对离轴激光雷达的近场信号进行校正,本文根据离轴激光雷达重叠因子的定义,利用高斯光束光强的解析传输公式,并考虑到离轴激光雷达系统激光分布与望远镜视场的五种关系,得到了利用雷达系统参数表示的离轴激光雷达重叠因子的解析计算公式。基于该公式对澳门地区雷达回波信号进行了校正和反演,所得结果证明了解析公式的有效性。利用解析公式通过数值计算方法详细研究了雷达系统参数对离轴激光雷达重叠因子的影响,该结果对激光雷达系统设计具有一定的参考价值。  相似文献   

8.
狄慧鸽*  华灯鑫  王玉峰  闫庆 《物理学报》2013,62(9):94215-094215
由于激光雷达光轴夹角的存在和光束质量分布的非均匀性, 导致理论回波信号与实际回波信号有较大差别, 需要对其进行校正. 基于数学推导和软件仿真, 给出了激光雷达重叠因子的数学表达式, 分析了光轴夹角导致的系统重叠因子在全程探测空间的变化情况; 分析了光束分布为高斯分布和均匀分布时的重叠因子变化情况; 对激光雷达的距离校正信号和Klett算法公式进行了重叠因子修正, 最后在对激光雷达系统参数标定的基础上, 在重叠区域利用修正的Klett公式对其所测得到的回波信号进行了修正, 在探测盲区利用斜率法修正距离校正信号, 进而得到了符合理论与实际情况的激光雷达在全程上校正的消光系数曲线. 关键词: 激光雷达 标定 重叠因子 消光系数  相似文献   

9.
微脉冲激光雷达技术是大气气溶胶观测的重要手段,当使用紫外激光光源时,可利用激光诱导荧光信号探测环境中的有机气溶胶。建立了微脉冲荧光激光雷达水平探测有机气溶胶的仿真模型,并对回波光子数及信噪比进行了数值仿真计算。根据仿真结果设计并搭建了一台微脉冲荧光激光雷达,通过对系统进行几何重叠因子标定,减小了近场荧光回波信号的强度误差。以营养肉汤溶液为气溶胶样本对该激光雷达系统开展了测试实验,实验表明该MPFL系统空间分辨率为7.5m,实验最大探测距离达到200m。同时与另一台低重频高脉冲能量的荧光激光雷达进行了对比实验,对比结果显示,两型激光雷达接收的荧光信号强度变化趋势具有很好的一致性,相关系数达82%以上。在相同的累加时间下,MPFL荧光信号变化率矩阵标准误差小于0.02%,具有更好的抗干扰性能,能够实现对有机气溶胶准确探测,验证了系统有效性和实用性。  相似文献   

10.
基于CCD的侧向散射激光雷达不受几何因子的影响,是探测近地面气溶胶的有力工具。夜晚的探测技术已成熟,由于背景光中夜晚的月光和星光远弱于白天的太阳光,故利用夜晚探测技术得到的白天气溶胶信噪比很低。实验中选用窄带滤光片和小张角镜头,通过校正窄带滤光片透射率、缩短单次曝光时间、多次曝光平均等技术可有效提高白天探测气溶胶的信噪比。白天个例表明,侧向散射激光雷达与后向散射激光雷达反演的气溶胶后向散射系数廓线在0.75~1.50km范围内的变化趋势一致,并对0.75km以下侧向散射激光雷达探测的正确性进行了验证。对合肥地区近地面气溶胶后向散射系数进行了37h的连续昼夜探测,并与同一地点的温度、PM2.5质量浓度联合进行分析。研究表明,改进后的白天侧向散射激光雷达技术是正确、可行的。  相似文献   

11.
The peak position for a lidar return signal is calculated and measured for the horizontal path with variation of the laser beam divergence angle (θ), and the inclination angle (δ) between the telescope and laser axes. This work shows that θ and δ are very important parameters to use in the design or alignment of a lidar system receiving a good lidar signal. This paper describes an experimental determination of geometrical form factors in the lidar equation. We receive the signals and determine the geometrical form factors by slope method in a homogeneous atmosphere. The differential absorption lidar equation is evaluated for the dual-pulse lidar system. A method using a geometrical form factor determined by the experiment is introduced to correct the error in C2H4 measurement. This method shows good correction of measurement error in lidar dual-pulse operation, especially in the short range.  相似文献   

12.
Geometrical form factor determination with Raman backscattering signals   总被引:4,自引:0,他引:4  
Hu S  Wang X  Wu Y  Li C  Hu H 《Optics letters》2005,30(14):1879-1881
A new method is presented to determine the geometrical form factor in Raman lidar. Mie and Raman backscattering signals are acquired by L625 Raman lidar; then the aerosol backscattering ratio and atmospheric molecular density are derived. By normalizing the molecular density of Raman lidar with radiosonde measurements, the geometrical form factors of lidar are obtained. Experimental results indicate this method is feasible.  相似文献   

13.
In order to study the influence factors of acquisition detection target information by lidar and understand the influence degree of each factor, the two-channel phase perturbation model and the two-channel eikonal variance model are derived in detail by using the geometrical optics method in this paper, and each factor is discussed in detail. The results show that the transmission distance is the main factor to affect the two-channel perturbation. With the increase of the transmission distance, the disturbing degree will gradually weaken. With the increase of transverse coordinates, the disturbing of two channels will also be weakened. In order to further weaken the disturbing degree, the feature dimension should be far larger than the wavelength, but far less than the transmission distance.  相似文献   

14.
An ultraviolet (UV) Raman lidar system at 354.7 nm has been developed for accurately measuring the aerosol extinction profiles. A spectroscopic filter combining a high-spectral-resolution grating with two narrowband mirrors is used to separate the vibrational Raman scattering signal of N2 at a central wavelength of 386.7 nm and the elastic scattering signal at 354.7 nm. The aerosol extinction is derived from the Raman scattering of N2 and the elastic scattering by the use of Raman method and Klett method, respectively. The derived results of aerosol extinction are used to compare the difference of two retrieval methods, and the preliminary experiment shows that the Raman lidar system operated in analog detection mode has the capability of measuring aerosol profiles up to a height of 3 km with a laser energy of 250 mJ and an integration time of 8 min.  相似文献   

15.
A ground-based polarization-Mie lidar has been developed to measure backscattering signals from the atmosphere and linear depolarization ratios at 532 nm. To retrieve depolarization properties of clouds and aerosols, the calibration factor (k) of two polarization channels at 532 nm must be calculated. In this paper three different experimental methods are presented to determine the calibration factor (k) in this polarization-Mie lidar. Some measured examples are presented and discussed. Experimental and validated results indicate these methods are feasible.  相似文献   

16.
We propose a new approach for computation of lidar overlap function, in which light propagation from a lidar to the atmosphere is analyzed with diffraction theory, while the backward propagation is treated with geometrical optics. In this approach, the beam pattern in the atmosphere is represented as a diffraction pattern, and the return beam pattern on the focal plane is built by ray-tracing technique to calculate the overlap function as a ratio of the intensity entering the detector surface to the total intensity on the focal plane. The proposed approach in this paper provides more accurate overlap function of a lidar system.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号