障碍物无源雷达系统的声光接收器

Asad Rustamov, Yashar Kerimov, Ahmed Mammedov, Mehman Binnatov, Vusal Katekhliyev
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引用次数: 0

摘要

本文的研究对象是某型军舰的无源雷达系统。研究了舰船新型无源雷达系统中声光接收机的使用特点,研究了声光效应的特点以及测量光电探测器光电特性的相关综合方法和工具,研究了激光辐射标定的能量参数和几何参数。研究表明,以跃迁特性、脉冲特性和频率特性作为确定声光延迟线工作参数和技术参数的主要手段。不可能将这些特性明确地外推到AODL上创建的声光雷达接收机特性的已知模型。研究的结果。在此假设的背景下,建立了AODL主要特征的数学模型。在舰船无源雷达声光接收机中应用同步补偿脉冲障碍物的基础上,确定了障碍物的完全补偿,以保证声光接收机有效接收信号。在雷达站(雷达)中,主要关注有用信号与被动障碍物的统计特性、信号通过被动障碍物的速度(频率)和时空差异。这些建议。建议仅在目标在反射器之外的特殊情况下使用这些特征,用于被动障碍物之间的信息持续时间、幅度和差异、障碍物沉默和信号分离。结论。基于所提出的高阻障脉冲障碍补偿方法,利用频率特性不依赖于调谐频率的带滤波器和同相障碍组织器的完全衰减,可以在军舰无源雷达系统声光接收机有效接收信号的过程中对障碍物进行充分补偿。
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ACOUSTO-OPTICAL RECEIVER OF AN OBSTRUCTION PASSIVE RADAR SYSTEM
The subject of research in the article is the passive radar system of a warship. The purpose of the work was to review the characteristics use of the acousto-optical receiver in the new passive radar system of the warship, to investigate the peculiarities of acoustooptic effect and the relevant synthesis of methods and tools for measuring the photodetector photoelectric characteristics and, in addition, to investigate the energy-and-geometric parameters of laser radiation Justification. It is shown that the transition, impulse and frequency characteristics are taken as the main means to determine the operating and technical parameters of the acousto-optical delay line. It is not possible to unambiguously extrapolate these characteristics to the known models of the characteristics of the acousto-optic radar receiver created on AODL. Research results. In the context of this postulate, mathematical models of the main characteristics of AODL were developed. On the basis of the synchronous compensation pulse obstacles applied to the passive radar acousto-optic receiver on military ships, the full compensation of the obstacles is determined for the effective reception of signals from the acousto-optic receiver. In radar stations (radar), the main attention is focused on the statistical properties of the useful signal and passive obstacles, the speed (frequency) of the signal passing through the passive obstacle and the space-time differences. The recommendations. These features are recommended to be used only in special cases where the target is outside the reflectors for informational duration, amplitude and differences between passive obstacles, obstacle silencing and signal separation. Conclusion. Applying the full attenuation of the band filter and synphase barrier organizers, whose frequency characteristics do not depend on the tuning frequency, it is possible to provide full compensation of obstacles during the effective reception of signals by the acousto-optic receiver in the passive radar system of warships based on the proposed method for high resistance to obstacles, pulse obstacle compensation.
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