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低能见度下无线量子通信网络准直系统的目标捕获

Target Acquisition for Collimation System of Wireless Quantum Communication Networks in Low Visibility.

作者信息

Li Keyu, Jiang Tao, Li Yang, Wang Xuemin, Zhan Zhiqiang, Chen Fengwei, Han Zhengfu, Wu Weidong

机构信息

CAS Key Laboratory of Quantum Information, University of Science and Technology of China, Hefei 230026, China.

Research Center of Laser Fusion, China Academy of Engineering Physics, Mianyang 621900, China.

出版信息

Entropy (Basel). 2023 Sep 25;25(10):1381. doi: 10.3390/e25101381.

Abstract

In severe low-visibility environments full of smoke, because of the performance degeneration of the near-infrared (NIR) collimation system of quantum drones communication networks, the improved dual-threshold method based on trend line analysis for long-wave infrared (LWIR) quantum cascade lasers (QCLs) is proposed, to achieve target acquisition. The simulation results show that smoke-scattering noise is a steeply varying medium-high-frequency modulation. At particle sizes less than 4 μm, the traditional dual-threshold method can effectively distinguish the target information from the smoke noise, which is the advantage of the LWIR laser compared to the NIR laser. For detecting lasers with high signal-to-noise ratios (SNRs), the method can achieve good target acquisition, by setting reasonable conventional thresholds, such as 0.7 times the peak intensity and 0.8 times the peak rising velocity. At low SNRs and steep intensity variation, the method can also achieve good target acquisition, by adaptively resetting new thresholds after filtering the detecting laser, such as 0.6 times the peak intensity and 0.6 times the peak rising velocity. The results of this paper will provide a reference for the performance improvement and refinement of the collimation system for wireless quantum communication networks in low visibility.

摘要

在充满烟雾的严重低能见度环境中,由于量子无人机通信网络的近红外(NIR)准直系统性能退化,提出了基于趋势线分析的长波红外(LWIR)量子级联激光器(QCL)改进双阈值方法,以实现目标捕获。仿真结果表明,烟雾散射噪声是一种急剧变化的中高频调制。在粒径小于4μm时,传统双阈值方法能有效从烟雾噪声中区分出目标信息,这是LWIR激光相对于NIR激光的优势。对于检测具有高信噪比(SNR)的激光器,通过设置合理的常规阈值,如峰值强度的0.7倍和峰值上升速度的0.8倍,该方法能实现良好的目标捕获。在低SNR和强度急剧变化时,通过对检测激光进行滤波后自适应重置新阈值,如峰值强度的0.6倍和峰值上升速度的0.6倍,该方法也能实现良好的目标捕获。本文结果将为低能见度下无线量子通信网络准直系统的性能改进和优化提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6df7/10606033/c4aed0677ed3/entropy-25-01381-g001.jpg

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