基于超表面反射的北斗信号质量与定位分析
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TH-3

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国家重点研发计划(2021YFB3900804)项目资助


Analysis of Beidou signal quality and positioning based on metasurface reflection
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    摘要:

    近年来全球导航卫星系统的发展已趋于成熟,但面对城市复杂环境如城市峡谷、树林遮蔽等场景常会出现可见星不足、 卫星信号衰减严重的问题,从而形成定位盲区。 不同于常规的从卫星端和接收端寻找定位优化方法的策略,基于超表面辅助的 GNSS 定位方法是从传播路径上改变无线电环境,实现对卫星信号的不同反射角度的波束赋形,有效建立虚拟视距链路。 首先, 搭建了定位模型,并设计了能将 15°入射的北斗 B1 信号以 30°反射的超表面;然后,通过暗室实测实验分析了其反射信号质量 与接收角度和接收距离的关系,验证了其波束赋形能力;最后,评估了基于超表面反射的北斗信号伪距单点定位精度,在东、北、 天顶 3 个方向上的均方根误差分别为 2. 138、4. 456、8. 268 m,验证了超表面辅助的 GNSS 定位的可行性,为后续实现超表面动 态定位提供了参考。

    Abstract:

    In recent years, the development of global navigation satellite system has matured. However, in complex environments such as urban canyons, forest shading and other scenes, issues such as insufficient visible stars and serious satellite signal attenuation, leading to positioning blind areas. Different from the conventional strategy of finding positioning optimization methods from the satellite end and the receiver end, the GNSS positioning method based on metasurface assistance changes the radio environment from the propagation path. It realizes beamforming of satellite signals at different reflection angles, effectively establishing a virtual line-of-sight link. Firstly, the positioning model is built and a metasurface that can reflect the 15° incident Beidou B1 signal to 30° is designed. Secondly, the relationship between the quality of its reflected signal, receiving angle, and receiving distance is analyzed through darkroom measurement experiments, verifying the beamforming capability. Finally, the pseudo-range single point positioning accuracy of Beidou signal based on metasurface reflection is evaluated. The root mean square error in the east, north and zenith directions were 2. 138, 4. 456 and 8. 268 m, respectively, which verifies the feasibility of metasurface assisted GNSS localization and provides a reference for the subsequent metassural dynamic positioning.

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吴竹君,潘树国,孙健恺,王国桐,陶贤露.基于超表面反射的北斗信号质量与定位分析[J].仪器仪表学报,2024,45(11):206-214

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  • 在线发布日期: 2025-01-26
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