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Push the limit of WiFi based localization for smartphones

Published: 22 August 2012 Publication History

Abstract

Highly accurate indoor localization of smartphones is critical to enable novel location based features for users and businesses. In this paper, we first conduct an empirical investigation of the suitability of WiFi localization for this purpose. We find that although reasonable accuracy can be achieved, significant errors (e.g., $6\sim8m$) always exist. The root cause is the existence of distinct locations with similar signatures, which is a fundamental limit of pure WiFi-based methods. Inspired by high densities of smartphones in public spaces, we propose a peer assisted localization approach to eliminate such large errors. It obtains accurate acoustic ranging estimates among peer phones, then maps their locations jointly against WiFi signature map subjecting to ranging constraints. We devise techniques for fast acoustic ranging among multiple phones and build a prototype. Experiments show that it can reduce the maximum and 80-percentile errors to as small as $2m$ and $1m$, in time no longer than the original WiFi scanning, with negligible impact on battery lifetime.

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cover image ACM Conferences
Mobicom '12: Proceedings of the 18th annual international conference on Mobile computing and networking
August 2012
484 pages
ISBN:9781450311595
DOI:10.1145/2348543
Permission to make digital or hard copies of all or part 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 components of this work owned by others than ACM must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected]

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Publication History

Published: 22 August 2012

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Author Tags

  1. peer assisted localization
  2. smartphone
  3. wifi fingerprint localization

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Cited By

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  • (2024)Enhanced Privacy-Preserving WiFi Fingerprint Localization from CL EncryptionChinese Journal of Electronics10.23919/cje.2022.00.25733:6(1435-1446)Online publication date: Nov-2024
  • (2024)Train Once, Locate Anytime for Anyone: Adversarial Learning-based Wireless LocalizationACM Transactions on Sensor Networks10.1145/361409520:2(1-21)Online publication date: 10-Jan-2024
  • (2024)Analysis and Design of Wireless Bidirectional Power and Data Transfer With Decoupled DD-R Coil GeometryIEEE Transactions on Transportation Electrification10.1109/TTE.2023.331950710:3(4709-4721)Online publication date: Sep-2024
  • (2024)A Simultaneous Wireless Power and Data Transfer Method Utilizing a Novel Coupler Design for Rotary Steerable SystemsIEEE Transactions on Power Electronics10.1109/TPEL.2024.340935839:9(11824-11833)Online publication date: Sep-2024
  • (2024)Fine-Grained UHF RFID Localization for RoboticsIEEE/ACM Transactions on Networking10.1109/TNET.2024.345769632:6(5247-5262)Online publication date: Dec-2024
  • (2024)Device-Free Human Tracking and Gait Recognition Based on the Smart SpeakerIEEE Transactions on Mobile Computing10.1109/TMC.2024.337964723:11(10610-10627)Online publication date: Nov-2024
  • (2024)SPRING+: Smartphone Positioning From a Single WiFi Access PointIEEE Transactions on Mobile Computing10.1109/TMC.2024.336724123:10(9549-9566)Online publication date: Oct-2024
  • (2024)HLoc: Exploiting Height Difference for WiFi Indoor Localization With Single Commercial APIEEE Sensors Journal10.1109/JSEN.2024.348600824:24(41424-41436)Online publication date: 15-Dec-2024
  • (2024)CORAL: Recognition and Locating of Contextual Objects With Unmodulated Acoustic SignalsIEEE Internet of Things Journal10.1109/JIOT.2024.343026211:20(33734-33743)Online publication date: 15-Oct-2024
  • (2024)A Simultaneous Power and Data Transfer Method for Dynamic Wireless Charging Electric VehiclesIEEE Journal of Emerging and Selected Topics in Power Electronics10.1109/JESTPE.2023.332347312:1(328-340)Online publication date: Feb-2024
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