English

PinMe: Tracking a Smartphone User around the World

Cryptography and Security 2018-02-06 v1

Abstract

With the pervasive use of smartphones that sense, collect, and process valuable information about the environment, ensuring location privacy has become one of the most important concerns in the modern age. A few recent research studies discuss the feasibility of processing data gathered by a smartphone to locate the phone's owner, even when the user does not intend to share his location information, e.g., when the Global Positioning System (GPS) is off. Previous research efforts rely on at least one of the two following fundamental requirements, which significantly limit the ability of the adversary: (i) the attacker must accurately know either the user's initial location or the set of routes through which the user travels and/or (ii) the attacker must measure a set of features, e.g., the device's acceleration, for potential routes in advance and construct a training dataset. In this paper, we demonstrate that neither of the above-mentioned requirements is essential for compromising the user's location privacy. We describe PinMe, a novel user-location mechanism that exploits non-sensory/sensory data stored on the smartphone, e.g., the environment's air pressure, along with publicly-available auxiliary information, e.g., elevation maps, to estimate the user's location when all location services, e.g., GPS, are turned off.

Keywords

Cite

@article{arxiv.1802.01468,
  title  = {PinMe: Tracking a Smartphone User around the World},
  author = {Arsalan Mosenia and Xiaoliang Dai and Prateek Mittal and Niraj Jha},
  journal= {arXiv preprint arXiv:1802.01468},
  year   = {2018}
}

Comments

This is the preprint version: the paper has been published in IEEE Trans. Multi-Scale Computing Systems, DOI: 0.1109/TMSCS.2017.2751462

R2 v1 2026-06-23T00:11:21.571Z