U-star: an underwater navigation system based on passive 3D optical identification tags
Xiao Zhang, Hanqing Guo, James Mariani, Li Xiao
Abstract
Underwater optical wireless communication techniques are promising due to a broad bandwidth with a long communication range compared with existing expensive acoustic and RF-based underwater communication techniques. For underwater navigation assistance during dive and rescue, it is more practical to adopt passive optical tags for objects/human identification and location-based services. However, existing optical tags (bar/QR codes) employ one/two dimensional designs, which lack significant element/symbol distance for robust decoding and full-directional localization capabilities for underwater navigation tasks. This paper investigates opportunities to increase the element distance in passive low-order optical tags by exploiting 3D spatial diversity. Specifically, we design U-Star, a system that consists of Underwater Optical Identification (UOID) tags and commercial camera-based tag readers for underwater navigation. Our UOID tags embed rich location and guidance information. Additionally, because our UOID tags employ a three-dimensional design, they can also determine the relative location of a user in real-time based on the perspective principles. We design AI based mobile algorithms for underwater denoising, relative positioning, and robust data parsing for tag readers. Finally, we evaluate U-Star on real UOID tag prototypes under different underwater scenarios. Results show that our 3-order UOID tag can embed 21 bits with a BER of 0.003 at 1m and less than 0.05 at up to 3m, which is sufficient for underwater navigation guidance with backup database.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 49eed5e8-d435-4c96-a758-d6befd71a134Cited by top-tier papers1
Ask how each one uses itBuilds on3
- AmphiLight: Direct Air-Water Communication with Laser LightCharles J. Carver, Tian Zhao, Hongyong Zhang, Kofi M. Odame et al.NSDI 2020 · 76 citations
- Turboboosting Visible Light Backscatter CommunicationYue Wu, Purui Wang, Kenuo Xu, Lilei Feng et al.SIGCOMM 2020 · 57 citations
- Shrimp: a robust underwater visible light communication systemChi Lin, Yongda Yu, Jie Xiong, Yichuan Zhang et al.MobiCom 2021 · 41 citations
Related papers
- UOTag: An All-Angle Passive Optical Tag for Underwater EnvironmentChi Lin, Ben Zhao, Jie Xiong, Yang Chi et al.UbiComp 2026
- UQRCom: Underwater Wireless Communication Based on QR CodeXinyang Liu, Lei Wang, Jie Xiong, Chi Lin et al.UbiComp 2023 · 34 citations
- AquaSaC: A Single Optical Waveform for Underwater Sensing and CommunicationYue Zhang, Peijun Hou, Nan CenINFOCOM 2026
- UWBeacon: Lighting up Centimeter-Level Underwater PositioningChi Lin, Jianan Lin, Jie Xiong, Qiwei Wang et al.MobiCom 2024 · 4 citations
- Acoustic RIS for Massive Spatial Multiplexing: Unleashing Degrees of Freedom and Capacity in Underwater CommunicationsLongfei Zhao, Jingbo Tan, Jintao Wang, Ian F. Akyildiz et al.INFOCOM 2026 · 1 citation
