Reprint

Precise Positioning with Smartphones

Edited by
September 2023
194 pages
  • ISBN978-3-0365-8818-6 (Hardback)
  • ISBN978-3-0365-8819-3 (PDF)

This book is a reprint of the Special Issue Precise Positioning with Smartphones that was published in

Chemistry & Materials Science
Engineering
Environmental & Earth Sciences
Summary

Over the last few years, many smartphones have been equipped with Global Navigation Satellite System (GNSS) technology, allowing people to use their own devices for positioning and location services. After the release of the Android Nougat (version 7) operating system, raw GNSS measurements (i.e., pseudorange, carrier-phase, Doppler shift, and carrier-to-noise density ratio (C/N0) observations) from smartphones and tablets became accessible, which opened the door to precise positioning capabilities in consumer devices. Many studies have since been conducted, as precise location information will lead to many new smartphone applications in the near future. While the progress has been encouraging, a number of limiting factors must be overcome in order to support real-world applications, including poor antenna quality, the difficulty of carrier phase ambiguity resolution, and low availability and integrity in operational environments. The contributions from academia and industry included in this reprint discuss innovative ideas and algorithms and present experimental results for precise positioning with Android smartphones.

Format
  • Hardback
License and Copyright
© 2022 by the authors; CC BY-NC-ND license
Keywords
GNSS; smartphone; precise point positioning; elevation angle; C/N0; best integer equivariant (BIE); smartphone positioning; mean squared error (MSE); real-time kinematic (RTK); multi-GNSS; Android; smartphone; RTK; PPK; GNSS; RTKLIB; decimeter; Google; carrier; DGNSS; GNSS positioning; data analysis; internet of things; mobile computing; localization; navigation; smartphone; GNSS; 3D building models; Android; smartphone; GNSS; L1/L5 dual-frequency; SBAS; Xiaomi Mi8; smartphone positioning; precise point positioning (PPP); android location API; smartphone GNSS logging apps; GnssLogger app; Geo++ RINEX logger app; UofC CSV2RINEX tool; GPS; GNSS; smartphone; localization; time-differenced carrier phase; smartphone range errors; realistic driving scenarios; environment classification; error distribution and correlation; smartphone positioning; real-time kinematic (RTK); ambiguity resolution (AR); global navigation satellite system (GNSS)