Argus

Author:

Regmi Hem1,Sur Sanjib1

Affiliation:

1. University of South Carolina, Columbia, SC, USA

Abstract

We propose Argus, a system to enable millimeter-wave (mmWave) deployers to quickly complete site-surveys without sacrificing the accuracy and effectiveness of thorough network deployment surveys. Argus first models the mmWave reflection profile of an environment, considering dominant reflectors, and then uses this model to find locations that maximize the usability of the reflectors. The key component in Argus is an effective deep learning model that can map the visual data to the mmWave signal reflections of an environment and can accurately predict mmWave signal profile at any unobserved locations. It allows Argus to find the best picocell locations to provide maximum coverage and also lets users self-localize accurately anywhere in the environment. Furthermore, Argus allows mmWave picocells to predict device's orientation accurately and enables object tagging and retrieval for VR/AR applications. We implement and validate Argus on two different buildings consisting of multiple different indoor environments. However, the generalization capability of Argus can easily update the model for unseen environments; so, Argus can be deployed to any indoor environment with little or no model fine-tuning.

Funder

National Science Foundation

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Networks and Communications,Hardware and Architecture,Software

Reference15 articles.

1. IEEE P802.11 - Task Group ay "Status of Project IEEE 802.11ay " http://www.ieee802.org/11/Reports/tgay_update.htm 2020. IEEE P802.11 - Task Group ay "Status of Project IEEE 802.11ay " http://www.ieee802.org/11/Reports/tgay_update.htm 2020.

2. 3GPP : A Global Initiative, "The Mobile Broadband Standard: Release 17 ," 2021 . [Online]. Available: http://www.3gpp.org/release-17BIBentrySTDinterwordspacing 3GPP: A Global Initiative, "The Mobile Broadband Standard: Release 17," 2021. [Online]. Available: http://www.3gpp.org/release-17BIBentrySTDinterwordspacing

3. 60 GHz Indoor Networking through Flexible Beams

4. S. Sur , X. Zhang , P. Ramanathan , and R. Chandra , " BeamSpy: Enabling Robust 60 GHz Links Under Blockage," in USENIX NSDI , 2016 . S. Sur, X. Zhang, P. Ramanathan, and R. Chandra, "BeamSpy: Enabling Robust 60 GHz Links Under Blockage," in USENIX NSDI, 2016.

5. A. M. Al-Samman , T. A. Rahman , M. H. Azmi , and M. Hindia , " Large-Scale Path Loss Models and Time Dispersion in an Outdoor Line-Of-Sight Environment for 5G Wireless Communications," AEU - International Journal of Electronics and Communications , vol. 70 , no. 11, 2016. A. M. Al-Samman, T. A. Rahman, M. H. Azmi, and M. Hindia, "Large-Scale Path Loss Models and Time Dispersion in an Outdoor Line-Of-Sight Environment for 5G Wireless Communications," AEU - International Journal of Electronics and Communications, vol. 70, no. 11, 2016.

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1. Outdoor Millimeter-Wave Picocell Placement using Drone-based Surveying and Machine Learning;2023 32nd International Conference on Computer Communications and Networks (ICCCN);2023-07

2. D3PicoNet: Enabling Fast and Accurate Indoor D-Band Millimeter-Wave Picocell Deployment;2023 IEEE 24th International Symposium on a World of Wireless, Mobile and Multimedia Networks (WoWMoM);2023-06

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