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Ranging performance of active laser detection

机译:测距主动激光检测性能

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Ranging performance is described for photoelectric equipment reconnaissance using an active laser detection system that isbased on the 'cat's eyes' effect of optical windows. Active laser detection systems have an advantage over passive systems because they can measure target velocity and spatial coordinates. However, there are several challenging problems here because of the great distances involved, the low returned power of the uncooperative target, and the optical aberrations induced by the atmosphere. In the design of this system, the principle of detection is based on the 'cat's eyes' effect according to which the optical windows of photoelectric equipments have a strong reflect character towards incident laser beam. With 'cat's eyes' effect, the detection of uncooperative target can be translated into one of a cooperative target, so the ratio of returned laser can be increased. In this paper, the ranging performance presented here takes into account all the various elements of the system, from the laser emission, target, atmospheric propagation to the detector. The characteristies of back-reflected laser and an estimate of the laser Cross Section (LCS) from 'cat's eyes target' are investigated in theory and simulation. The Signal-to-Noise Ratio (SNR) is calculated by combining the probability of detection of the system for given electronic characteristics of the system and for a given probability of false alarms. On the basis of analysis of SNR, minimum detectable signal power, operating distance of the system and factors affecting the ranging performance is analyzed. Results indicate that system has characters of long range, and high sensitivity. It can be used to detect the acrial targets such as reconnaissance drone, navigate missile, reconnaissance satellite etc.
机译:使用积极的激光检测系统,描述了光电设备侦察的测距性能,这些激光器检测系统被吸取为“猫的眼睛”光学窗口的影响。主动激光检测系统具有与无源系统的优势,因为它们可以测量目标速度和空间坐标。然而,这里存在几个具有挑战性的问题,因为所涉及的距离很大,不合作目标的低返回力以及大气引起的光学像差。在该系统的设计中,检测原理是基于根据该系统的“猫的眼睛”效果,光电设备的光学窗口具有朝向入射激光束的强反射特性。通过“猫的眼睛”效果,可以将不合作目标的检测转换成协作目标之一,因此可以增加返回的激光比率。在本文中,这里提出的测距性能考虑了系统的所有各种元素,从激光发射,目标,大气传播到检测器。理论和模拟,研究了后反射激光和激光横截面(LCS)的估计的估计。通过组合系统的检测概率来计算信噪比(SNR),用于给定系统的电子特性和给定误报的给定概率。在SNR分析的基础上,分析了最低可检测信号功率,系统的运行距离和影响测距性能的因素。结果表明,系统具有长距离的特征和高灵敏度。它可用于检测群体目标,如侦察无人机,导航导弹,侦察卫星等。

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