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A vision-based indoor positioning systems utilizing computer aided design drawing

Published: 14 October 2022 Publication History

Abstract

In recent years, with the increase in users' demand for location services, the research of Indoor Positioning Systems (IPS) has attracted much attention. Many researchers proposed schemes to estimate the user's location based on the Received Signal Strength Indicator (RSSI) values of wireless technologies. However, the RSSI value is affected by signal interference seriously. This causes the accuracy of the positioning to be greatly reduced. To solve this problem, we use Computer Vision (CV) to replace traditional solutions in this paper. CV is known for its high performance and low complexity. The proposed scheme is capable of inferring the current location of users in the possible candidates from the interior structural features of buildings captured by cameras and Computer-Aided Design (CAD) drawing.

References

[1]
Lidong Chen, Yin Zou, Yaohua Chang, Jinyun Liu, Benjamin Lin, and Zhigang Zhu. 2019. Multi-level scene modeling and matching for smartphone-based indoor localization. In 2019 IEEE International Symposium on Mixed and Augmented Reality Adjunct (ISMAR-Adjunct). IEEE, 311--316.
[2]
Yunzhi Li, Rajeswari Hita Kambhamettu, Yidan Hu, and Rui Zhang. 2022. ImPos: An Image-Based Indoor Positioning System. In 2022 IEEE 19th Annual Consumer Communications & Networking Conference (CCNC). IEEE, 144--150.
[3]
Han Xu, Zheng Yang, Zimu Zhou, Longfei Shangguan, Ke Yi, and Yunhao Liu. 2016. Indoor localization via multi-modal sensing on smartphones. In Proceedings of the 2016 ACM International Joint Conference on Pervasive and Ubiquitous Computing. 208--219.

Cited By

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  • (2024)Isochrons in Photonic Oscillators: A Paradigm Shift in Positioning2024 IFIP Networking Conference (IFIP Networking)10.23919/IFIPNetworking62109.2024.10619066(1-7)Online publication date: 3-Jun-2024
  • (2023)A Novel Ranging and IMU-Based Method for Relative Positioning of Two-MAV Formation in GNSS-Denied EnvironmentsSensors10.3390/s2309436623:9(4366)Online publication date: 28-Apr-2023
  • (2023)Stochastic Modeling of Smartphones GNSS Observations Using LS-VCE and Application to Samsung S20Sensors10.3390/s2307347823:7(3478)Online publication date: 26-Mar-2023
  • Show More Cited By

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Information

Published In

cover image ACM Conferences
MobiCom '22: Proceedings of the 28th Annual International Conference on Mobile Computing And Networking
October 2022
932 pages
ISBN:9781450391818
DOI:10.1145/3495243
Permission to make digital or hard copies of part or all of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for third-party components of this work must be honored. For all other uses, contact the Owner/Author.

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Association for Computing Machinery

New York, NY, United States

Publication History

Published: 14 October 2022

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Author Tags

  1. artificial intelligence
  2. indoor positioning system
  3. vision and scene understanding

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  • Poster

Funding Sources

  • Institute for Information and Communications Technology Promotion
  • Ministry of Science and ICT, South Korea

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ACM MobiCom '22
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Overall Acceptance Rate 440 of 2,972 submissions, 15%

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Cited By

View all
  • (2024)Isochrons in Photonic Oscillators: A Paradigm Shift in Positioning2024 IFIP Networking Conference (IFIP Networking)10.23919/IFIPNetworking62109.2024.10619066(1-7)Online publication date: 3-Jun-2024
  • (2023)A Novel Ranging and IMU-Based Method for Relative Positioning of Two-MAV Formation in GNSS-Denied EnvironmentsSensors10.3390/s2309436623:9(4366)Online publication date: 28-Apr-2023
  • (2023)Stochastic Modeling of Smartphones GNSS Observations Using LS-VCE and Application to Samsung S20Sensors10.3390/s2307347823:7(3478)Online publication date: 26-Mar-2023
  • (2023)RBCN-Net: A Data-Driven Inertial Navigation Algorithm for PedestriansApplied Sciences10.3390/app1305296913:5(2969)Online publication date: 25-Feb-2023
  • (2023)A learning-based metaheuristic administered positioning model for 3D IoT networksApplied Soft Computing10.1016/j.asoc.2023.110113136:COnline publication date: 1-Mar-2023

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