Title :
Indoor infrastructure-less solution based on sensor augmented smartphone for pedestrian localisation
Author :
Trehard, Guillaume ; Lamy-Perbal, Sylvie ; Boukallel, M.
Author_Institution :
Sensorial & Ambiant Interfaces Lab., CEA, Gif-sur-Yvette, France
Abstract :
The paper deals with the design, the calibration and experimental validation of a novel infrastructure-less solution dedicated to indoor pedestrian localisation issues. The approach involves aerodynamic fluid computation for instantaneous speed estimation of a pedestrian handling a smartphone. For this purpose, a differential hot-wire MEMS anemometer is integrated to an Android smartphone by means of a dedicated ARM 32 bits controller. Pedestrian orientation measurements are ensured by a gyroscope sensor coupled with the smartphone. Consequently, both instantaneous speed and direction measurements are combined to the dead reckoning technique for estimating the 2D relative position of the user. Theoretical modeling is conducted in order to calibrate and quantify the accuracy of the sensor. In situ experiments demonstrate that the sensors coupled with a smartphone achieve pedestrian localisation with average accuracy of 2 to 4 meters for 7 to 49m long trajectories.
Keywords :
aerodynamics; anemometers; calibration; indoor radio; microcontrollers; microsensors; pedestrians; radionavigation; sensor placement; smart phones; 2D relative position estimation; Android smart phone; aerodynamic fluid computation; calibration; dead reckoning technique; dedicated ARM controller; differential hot-wire MEMS anemometer; gyroscope sensor; indoor infrastructureless solution; indoor pedestrian localisation; instantaneous speed estimation; pedestrian orientation measurements; sensor augmented smart phone; word length 32 bit; Accuracy; Calibration; Fluid flow measurement; Legged locomotion; Position measurement; Temperature measurement; Velocity measurement;
Conference_Titel :
Ubiquitous Positioning, Indoor Navigation, and Location Based Service (UPINLBS), 2012
Conference_Location :
Helsinki
Print_ISBN :
978-1-4673-1908-9
DOI :
10.1109/UPINLBS.2012.6409758