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自动激光跟踪与测距系统。

Automatic laser tracking and ranging system.

作者信息

Cooke C R

出版信息

Appl Opt. 1972 Feb 1;11(2):277-84. doi: 10.1364/AO.11.000277.

DOI:10.1364/AO.11.000277
PMID:20111495
Abstract

An automatic laser tracking and ranging system has been developed for use with cooperative retroreflective targets. Target position is determined with high precision at ranges out to 19 km and sample rates up to one hundred measurements per second. The data are recorded on a magnetic tape in the form of azimuth, elevation, range, and standard time and are computer-compatible. The system is fully automatic with the exception of the initial acquisition sequence, which is performed manually. This eliminates the need for expensive and time-consuming photographic data reduction. Also, position is uniquely determined by a single instrument. To provide convenient operation at remote sites, the system is van-mounted and operates off a portable power generator. The transmitter is a flash-pumped Q-spoiled Nd:YAG laser developing 1 MW peak power in a 10-mrad beam at a rate of 100 pps. The beam, which is coaxial with the receiver, is directed to the target by an azimuth-elevation mirror mount. The return beam is imaged o separate ranging and tracking receivers. The ranging receiver measures time of flight of the 25-nsec laser pulse with range accuracies of +/-15 cm. The tracking receiver uses a quadrant photodiode followed by matched log video amplifiers and achieves a tracking accuracy of +/-0.1 mrad. An optical dynamic range of 30 dB is provided to minimize error due to scintillation. Also, 80 dB of optical dynamic range is provided by adjustable neutral density filters to compensate for changes in target range.

摘要

已开发出一种自动激光跟踪和测距系统,用于配合合作式后向反射目标使用。在高达19千米的距离和每秒多达一百次测量的采样率下,可高精度确定目标位置。数据以方位角、仰角、距离和标准时间的形式记录在磁带上,并且与计算机兼容。除了手动执行的初始采集序列外,该系统完全自动化。这消除了对昂贵且耗时的摄影数据处理的需求。此外,位置由单一仪器唯一确定。为了在偏远地点提供便捷操作,该系统安装在厢式货车上,并由便携式发电机供电运行。发射器是一台闪光灯泵浦的调Q Nd:YAG激光器,在10毫弧度的光束中以100次/秒的速率产生1兆瓦的峰值功率。与接收器同轴的光束通过方位 - 仰角镜架指向目标。返回光束成像到单独的测距和跟踪接收器上。测距接收器测量25纳秒激光脉冲的飞行时间,测距精度为±15厘米。跟踪接收器使用象限光电二极管,后面跟着匹配的对数视频放大器,跟踪精度达到±0.1毫弧度。提供30分贝的光学动态范围,以最小化由于闪烁引起的误差。此外,可调中性密度滤光片提供80分贝的光学动态范围,以补偿目标距离的变化。

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