Complexing of information channels of UAV detection and observation systems from the statistic solutions theory standpoint

IF 0.2 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
V. Kartashov, V.O. Pososhenko, V.I. Kolisnyk, A. Kapusta, M. Rybnykov, Y.V. Pershyn, V. Kizka
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Abstract

Currently, unmanned aerial vehicles (UAVs) provide a wide range of useful tasks for humanity, but, on the other hand, they pose a serious threat in economic, military and other areas of human activity. Difficulties in observing UAVs using modern technical means, as well as their relatively low cost, lead to an expansion of the scope of UAVs based illegal actions. Therefore, the protection of various objects against UAVs is a serious scientific and technical task of today. Since the possibilities of the known methods of UAV detection are different, the joint use of systems of different types is realized in practice nowadays, in order to increase the informativeness of the obtained data by their joint (complex) processing. The number of publications in this field is constantly increasing, and considerable attention is paid to integrated systems built on the basis of various physical sensors. However, the efficiency of multi-sensor systems with integrated processing of the output signals of the channels in practice remains insufficient. This article is devoted to the study of methods for the synthesis of new, more efficient algorithms for complexing radar, acoustic, optical and infrared information channels of integrated UAV detection and recognition systems, which are performed from the standpoint of statistical theory of radio system optimization. This approach allows synthesizing the optimal (according to the selected quality criterion) complex information processing system, which ensures obtaining the maximum amount of information from the vector process observed at the inputs of information channels. There shown the possibility of constructing an optimal UAV detector with the use of the late strategy of combining information at the level of decisions made in individual channels of the system.
基于统计解理论的无人机探测观测系统信息通道复杂性研究
目前,无人驾驶飞行器(uav)为人类提供了广泛的有用任务,但另一方面,它们在经济、军事和其他人类活动领域构成了严重威胁。利用现代技术手段观察无人机的困难,以及它们相对较低的成本,导致无人机非法行为的范围扩大。因此,保护各种物体免受无人机攻击是当今一项严肃的科学技术任务。由于已知的无人机探测方法的可能性不同,目前在实践中实现了不同类型系统的联合使用,通过对所获得数据的联合(复杂)处理来增加数据的信息量。该领域的出版物数量不断增加,在各种物理传感器的基础上构建的集成系统受到了相当大的关注。然而,在实际应用中,对各通道输出信号进行综合处理的多传感器系统的效率仍然不足。本文从无线电系统优化统计理论的角度出发,研究了综合无人机探测识别系统中雷达、声、光、红外信息通道复杂化的新型、高效算法的合成方法。该方法允许合成最优(根据选定的质量标准)复杂信息处理系统,确保从信息通道输入处观察到的矢量过程中获得最大数量的信息。显示了使用在系统的各个通道中做出决策的级别上组合信息的后期策略构建最佳UAV探测器的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia
Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia ENGINEERING, ELECTRICAL & ELECTRONIC-
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