scispace - formally typeset
Journal ArticleDOI

Location Fingerprinting With Bluetooth Low Energy Beacons

Ramsey Faragher, +1 more
- 06 May 2015 - 
- Vol. 33, Iss: 11, pp 2418-2428
TLDR
This work provides a detailed study of BLE fingerprinting using 19 beacons distributed around a ~600 m2 testbed to position a consumer device, and investigates the choice of key parameters in a BLE positioning system, including beacon density, transmit power, and transmit frequency.
Abstract
The complexity of indoor radio propagation has resulted in location-awareness being derived from empirical fingerprinting techniques, where positioning is performed via a previously-constructed radio map, usually of WiFi signals. The recent introduction of the Bluetooth Low Energy (BLE) radio protocol provides new opportunities for indoor location. It supports portable battery-powered beacons that can be easily distributed at low cost, giving it distinct advantages over WiFi. However, its differing use of the radio band brings new challenges too. In this work, we provide a detailed study of BLE fingerprinting using 19 beacons distributed around a $\sim\! 600\ \mbox{m}^2$ testbed to position a consumer device. We demonstrate the high susceptibility of BLE to fast fading, show how to mitigate this, and quantify the true power cost of continuous BLE scanning. We further investigate the choice of key parameters in a BLE positioning system, including beacon density, transmit power, and transmit frequency. We also provide quantitative comparison with WiFi fingerprinting. Our results show advantages to the use of BLE beacons for positioning. For one-shot (push-to-fix) positioning we achieve $30\ \mbox{m}^2$ ), compared to $100\ \mbox{m}^2$ ) and < 8.5 m for an established WiFi network in the same area.

read more

Content maybe subject to copyright    Report

Citations
More filters
Book ChapterDOI

Radio Fingerprinting-Based Indoor Localization: Overcoming Practical Challenges

TL;DR: This chapter addresses in detail several aspects of radio fingerprinting-based solutions with the focus on Wi-Fi and iBeacon signals.
Journal ArticleDOI

An indoor localization dataset and data collection framework with high precision position annotation

TL;DR: A novel technique and an associated high resolution dataset that aims to precisely evaluate wireless signal based indoor positioning algorithms and an augmented reality (AR) based positioning system that is used to annotate the wireless signal parameter data samples with high precision position data.
Proceedings ArticleDOI

Non-parametric Error Modeling for Ultra-wideband Localization Networks

TL;DR: An ultra-wideband-based UWB localization system that achieves high accuracy through nonparametric estimation of measurement probability densities and explicit modeling of antenna delays and an optimization framework that recovers both positions and antenna delays is proposed.
Dissertation

Contextual Information based on Pervasive Sound Analysis

TL;DR: This thesis proposes a framework for indoor location and activity recognition from new source of information: the sound perceived through the device’s microphone by extracting information relative to the user's position and activities through machine learning and audio processing techniques.
Proceedings ArticleDOI

Experience: practical indoor localization for malls

TL;DR: A large dataset that contains IMU, BLE, GMF readings, and the localization ground truth collected by trained testers from 37 shopping malls is released to facilitate future research on mobile sensing and indoor localization.
References
More filters
Journal ArticleDOI

Survey of Wireless Indoor Positioning Techniques and Systems

TL;DR: Comprehensive performance comparisons including accuracy, precision, complexity, scalability, robustness, and cost are presented.
Proceedings ArticleDOI

The Horus WLAN location determination system

TL;DR: The Horus system identifies different causes for the wireless channel variations and addresses them and uses location-clustering techniques to reduce the computational requirements of the algorithm and the lightweight Horus algorithm helps in supporting a larger number of users by running the algorithm at the clients.
Journal ArticleDOI

A Survey of Indoor Inertial Positioning Systems for Pedestrians

TL;DR: It is concluded that PDR techniques alone can offer good short- to medium- term tracking under certain circumstances, but that regular absolute position fixes from partner systems will be needed to ensure long-term operation and to cope with unexpected behaviours.

Enhancements to the RADAR User Location and Tracking System

TL;DR: This paper analyzes shortcomings of the basic system, develops and evaluates solutions to address these shortcomings, and describes several new enhancements, including a novel access point-based environmental profiling scheme, and a Viterbi-like algorithm for continuous user tracking and disambiguation of candidate user locations.

Network Time Protocol Version 4: Protocol and Algorithms Specification

TL;DR: NTP version 4 (NTPv4), which is backwards compatible with NTP version 3 (N TPv3), described in RFC 1305, as well as previous versions of the protocol, are described.
Related Papers (5)