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集成超表面透镜的相机实现毫米级精度的广角室内区域定位

Millimeter-precision positioning for wide-angle indoor area enabled by metalens-integrated camera.

作者信息

Li Muyang, Wu Yue, Li Haobai, Zhou Zi-Wen, Zhang Yanxiang, Yuan Zhongyi, Zhang Zaichen, Chen Ji

机构信息

National Mobile Communications Research Laboratory, School of Information Science and Engineering, Frontiers Science Center for Mobile Information Communication and Security, Southeast University, Nanjing 210096, China.

Purple Mountain Laboratories, Nanjing 211111, China.

出版信息

Nanophotonics. 2024 Aug 29;13(22):4101-4110. doi: 10.1515/nanoph-2024-0277. eCollection 2024 Sep.

Abstract

Due to signal shielding caused by building structures, conventional mature positioning technologies such as the Global Positioning System (GPS) are only suitable for outdoor navigation and detection. However, there are many scenarios that urgently require high-precision indoor positioning technologies, such as indoor wireless optical communications (OWCs), navigation in large buildings, and warehouse management. Here, we proposed a millimeter-precision indoor positioning technology based on metalens-integrated camera, which determines the position of the device through imaging of beacon LEDs. Thanks to the wide-angle imaging design of our metalens, the camera can accurately capture images of beacon LEDs even when it is situated in distant corner locations. Consequently, our localization scheme achieves millimeter-level positioning accuracy across majority of wide-angle (∼120°) indoor area. Compared to traditional positioning schemes by photodiode (PD), our imaging-based approach demonstrates superior resistance to interference, thereby safeguarding positioning precision from the external signals influence. Furthermore, the compact dimensions and high performances of the positioning device make it suitable for integration into highly portable devices, such as smartphones and drones, revealing its broad potential applications in the future.

摘要

由于建筑结构造成的信号屏蔽,诸如全球定位系统(GPS)等传统成熟的定位技术仅适用于户外导航和探测。然而,存在许多迫切需要高精度室内定位技术的场景,例如室内无线光通信(OWC)、大型建筑内的导航以及仓库管理。在此,我们提出了一种基于集成超构透镜的摄像头的毫米级精度室内定位技术,该技术通过信标发光二极管(LED)的成像来确定设备的位置。得益于我们超构透镜的广角成像设计,即使摄像头位于远处角落位置,它也能准确捕捉信标LED的图像。因此,我们的定位方案在大多数广角(约120°)室内区域实现了毫米级的定位精度。与传统的光电二极管(PD)定位方案相比,我们基于成像的方法展现出更强的抗干扰能力,从而使定位精度免受外部信号影响。此外,定位设备的紧凑尺寸和高性能使其适合集成到高度便携的设备中,如智能手机和无人机,这揭示了其在未来广泛的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3b3/11501052/aff3459c9795/j_nanoph-2024-0277_fig_001.jpg

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