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基于自适应光源选择的纠缠光量子定位方法
引用本文:周牧,张靖,谢良波,何维,李玲霞.基于自适应光源选择的纠缠光量子定位方法[J].电子与信息学报,2022,44(9):3058-3064.
作者姓名:周牧  张靖  谢良波  何维  李玲霞
作者单位:重庆邮电大学通信与信息工程学院 重庆 400065
基金项目:重庆市教委科学技术研究项目(KJZD-K202000605),重庆市技术创新与应用发展专项,国家自然科学基金(61901076),重庆市研究生科研创新项目(CYS21295)
摘    要:纠缠光量子定位方法是目前导航与定位领域的研究热点之一,而现有方法很少考虑散射环境动态变化对不同光源中传播距离估计性能的影响,从而导致定位精度不高且鲁棒性较差的问题。针对这一问题,该文提出一种基于自适应光源选择的纠缠光量子定位方法。首先,建立不同散射环境干扰与各光源信号传播距离之间的数学关系,计算各光源信号光时间脉冲序列光子丢失率均值,并对各光源时间脉冲序列进行动态分组;其次,对纠缠光时间脉冲序列进行符合计数,根据光的2阶关联曲线得到各光源各分组下的传播距离;最后,以各光源各分组下的相对误差为依据,动态选择具有较小相对误差的光源进行定位。实验结果表明,所提方法具有更高的定位精度和更强的定位鲁棒性。

关 键 词:纠缠光    量子定位    符合计数    2阶关联    自适应光源选择
收稿时间:2022-03-01

Entangled Light Quantum Positioning Method Based on Adaptive Light Source Selection
ZHOU Mu,ZHANG Jing,XIE Liangbo,HE Wei,LI Lingxia.Entangled Light Quantum Positioning Method Based on Adaptive Light Source Selection[J].Journal of Electronics & Information Technology,2022,44(9):3058-3064.
Authors:ZHOU Mu  ZHANG Jing  XIE Liangbo  HE Wei  LI Lingxia
Affiliation:School of Communication and Information Engineering, Chongqing University of Posts and Telecommunications, Chongqing 400065, China
Abstract:The entangled photon positioning method is one of the current research hotspots in the field of navigation and positioning. However, the existing methods consider rarely the influence of the dynamic changes of the scattering environment on the performance of propagation distance estimation in different light sources, resulting in the problem of low positioning accuracy and poor robustness. To solve this problem, an entangled light quantum positioning method is proposed based on adaptive light source selection. First of all, the mathematical relationship between the interference of different scattering environments and the light propagation distance in each light source is established, the average photon loss rate of each light source signal light time pulse sequence is calculated, and the time pulse sequence of each light source is dynamically grouped. Then, the optical time pulse sequence is matched, and the propagation distance of each light source in each group is obtained according to the second-order correlation curve of light. Finally, based on the relative error of each light source in each group, the light source with the smaller relative error in each group is dynamically selected for positioning. The experimental results show that the proposed method has high positioning accuracy and strong positioning robustness.
Keywords:
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