Title :
Fingerprint-free tracking with dynamic enhanced field division
Author :
Qingquan Zhang ; Ziqiao Zhou ; Wei Xu ; Jing Qi ; Chenxi Guo ; Ping Yi ; Ting Zhu ; Sheng Xiao
Author_Institution :
Univ. of Maryland, Baltimore, MD, USA
fDate :
April 26 2015-May 1 2015
Abstract :
Wireless sensor networks are often deployed for tracking moving objects. Many tracking algorithms have been proposed with two general assumptions: the preset fingerprints(prior landmark or context information) and an interference-free environment. These algorithms, however, cannot be used for on-demand deployment where finger-prints are unavailable and would perform poorly in interference-rich environments. In this paper, we present a fingerprint-free localizing and tracking algorithm, called Enhanced Field Division (EFD). The EFD algorithm is used to dynamically divide the field into areas with unique signatures and tracks the target, without any finger-prints. We also implemented a proof-of-concept localization platform to demonstrate the tracking accuracy and the algorithm performance in practical, interference rich environment.
Keywords :
object tracking; radiofrequency interference; wireless sensor networks; EFD algorithm; dynamic enhanced field division; fingerprint-free localizing algorithm; fingerprint-free tracking; interference-free environment; interference-rich environments; preset fingerprints; tracking accuracy; tracking algorithms; wireless sensor networks; Accuracy; Conferences; Heuristic algorithms; Interference; Mathematical model; Target tracking;
Conference_Titel :
Computer Communications (INFOCOM), 2015 IEEE Conference on
Conference_Location :
Kowloon
DOI :
10.1109/INFOCOM.2015.7218671