光电经纬仪

  • 网络theodolite;Photoelectric Theodolite
光电经纬仪光电经纬仪
  1. 778光电经纬仪的数据记录和CRT显示

    Data Recording and CRT Displaying for the photoelectric Theodolite 778

  2. 介绍了智能PID控制器的原理、结构、算法及其在光电经纬仪系统中的应用研究,并对实验结果加以分析。

    The operating principle , constitution , algorithm and its application to the photoelectric theodolite system are introduced and the analysis for the experimental results is carried out .

  3. 建立了光电经纬仪的各种坐标系及其相互关系

    It builds coordinate and their correlations of photoelectricity theodolite .

  4. 智能PID控制器在光电经纬仪系统中的应用研究

    Research on the Application of the Intelligent PID Controller to Photoelectric Theodolite System

  5. 改善光电经纬仪动态跟踪性能的模糊PID技术

    Technology of Fuzzy PID Control to Improve the Performance of Dynamic Tracking for Photoelectric Theodolite

  6. CCD激光自准直系统测光电经纬仪车载平台变形

    Deformation measurement for vehicle platform of photoelectric theodolite with CCD laser collimation system

  7. 基于SOPC的光电经纬仪通信系统设计

    Design of Communication System in the Photoelectricity Theodolite Equipments Based on SOPC

  8. 结合X小型遥控光电经纬仪的具体参数对微分方程进行分析简化,得到了工程化的光电经纬仪数学模型及控制对象的数学模型。

    The equations is simplified with concrete parameter of " the X small remote-control optical-electronic theodolite " . The mathematic model of optical-electronic theodolite control target is set up .

  9. 以X小型遥控光电经纬仪为背景,研究了双反射镜式光电经纬仪的总体设计。

    The overall design of the double reflector optical - electronic theodolite is studied on the background of " the X small remote - control optical - electronic theodolite " .

  10. GJ-341小型遥控光电经纬仪星库星表

    Star library and star catalogue of GJ-341 small remote-control optronic theodolite

  11. 光电经纬仪组网测量位置估计的Cramer-Rao限

    Cramer-Rao lower bounds of position estimation in a photoelectric theodolite-based network

  12. 车载平台变形是影响光电经纬仪跟踪精度的关键因素,提出了利用CCD激光自准直测量系统来测量车载平台变形的新方法。

    Since deformation of vehicle platform is a key factor to influence the precision of the theodolite tracking , a new method is presented to measure the deformation of vehicle platform using CCD laser collimation measurement system .

  13. 模糊控制在DGC光电经纬仪中的应用

    Application of Fuzzy Algorithms to DGC Electro-Optical Theodolite

  14. 根据动态精度靶标的机械结构和由a,b,θ角计算出来的光电经纬仪回转中心的空间位置,结合T型架光电经纬仪的机构特点,采用偏心的方法对其进行动态精度的检测。

    According to mechanical structure of target for dynamic precision , and with a 、 b 、θ angle calculation the space location of photoelectric theodolite turning centre , and T model frame the organization characteristic of photoelectric theodolite , the partial method is used for the detection of dynamic precision .

  15. 在新一代光电经纬仪中为了能够及时获取弹道的变化特性和准确判断弹道的位置,需要选择大阵列、高帧频的CCD像机,这样不可避免地产生了大量高速的图像数据。

    In order to obtain the changing characteristics of trajectory and judge its accurate position , we always put high frame frequency and dig area CCDs into use in the photoelectric theodolite . Thus , massive and high speed data is produced inevitably .

  16. GJ-341光电经纬仪视差和反射镜角差的分析与控制

    Analysis and control of sight axis error and mirror angle error in GJ 341

  17. GD-220光电经纬仪轴系的精度分析

    Analysis of the axial accuracy of the GD-220 photoelectric theodolite

  18. 测角系统及其可靠性对GJ-341小型遥控光电经纬仪测量精度的影响

    The effect of surveying angle system and its reliability on measuring accuracy of GJ-341 small remote-control optical-electronic theodolite

  19. GJ-341小型遥控光电经纬仪的测角系统采用19位增量式编码器,理论上达到了要求。

    19 figure incremental mode optical shaft angle encoder is used in GJ 341 small remote control optical electronic theodolite . Its accuracy is enough in terms of theory .

  20. 但由于测角系统及其可靠性存在诸多问题,使其在实际使用中无法满足GJ-341小型遥控光电经纬仪测角精度的要求。

    But there are some problems in the surveying angle system and its reliability . This made its accuracy is not enough for GJ 341 small remote control optical electronic theodolite in practice .

  21. 在由多台光电经纬仪组成的测量网中,提出一种基于目标位置估计Cramer-Rao限(CRLB)的精度分析方法,并给出了光电经纬仪组网测量布站应遵循的原则。

    Referring to a measuring network composed of two or more photoelectric theodolites , an approach for precision analysis based on Cramer-Rao Lower Bounds ( CRLB ) of target position parametric estimation is proposed and the principles to locate the netted photoelectric theodolites is also given in the paper .

  22. 中型光电经纬仪垂直轴系的可靠性设计

    Reliability Design for Vertical Shafting of Medium sized Opto electronic Theodolite

  23. 778光电经纬仪主光学系统的调整

    The Alignment of Main Optical System for the photoelectric Theodolite 778

  24. 用数字滤波器改善光电经纬仪机械谐振频率的方法

    Digital Filter Approach to Improving the Resonance Frequency of Photoelectric Theodolite

  25. 778光电经纬仪的动靶标引导

    The Guiding for the Moving Targets of the Photoelectric Theodolite 778

  26. 778光电经纬仪多微机控制系统

    The Multi & Microcomputer Control System of the Photoeletric Theodolite 778

  27. 778光电经纬仪红外跟踪测量系统

    The Infrared Tracking and Measuring System for the photoelectric Theodolite 778

  28. 应用坐标变换动态修正光电经纬仪脱靶量

    Dynamic correction of target deviations for photoelectric theodolites by coordinate transform

  29. 在深入分析光电经纬仪动力学特性的基础上,讨论了光电经纬仪的控制策略。

    The control strategy of optical - electronic theodolite is discussed .

  30. 靶场光电经纬仪多台交会测量数据的一种处理方法

    A Data Processing Method on Trajectory Measurement by Intersection in Shooting Range