Title :
The 3-D Positioning of Wireless Sensors in Dispersive Propagation Media
Author :
Davis, Joseph G. ; Sloan, R. ; Peyton, Anthony J.
Author_Institution :
Warton Aerodrome Warton, BAE Syst., Preston, UK
Abstract :
This paper describes a novel inversion algorithm for determining the 3-D position coordinates and environmental complex permittivity of wireless nodes embedded in a dispersive propagation media. In this paper, wireless sensors are considered to form part of a network for monitoring salient parameters, such as temperature and humidity, in large wheat-filled storage vessels, where the highly reflective nature of the propagation environment engenders extreme multipath effects. Under such conditions, the inherent difficulties in deriving reliable pulse propagation delay and amplitude estimates greatly diminishes the effectiveness of conventional free-space positioning methods. These limitations have lead to the development of alternative inversion techniques capable of retrieving both geometric positioning and electromagnetic propagation data. The inversion algorithm developed within is formulated as a nonlinear least squares problem in which the misfit between time domain positioning measurements and modeled data is minimized via application of a novel minimum single-level linkage optimization algorithm. In developing a more refined propagation forward solution incorporating position coordinates, host media electromagnetic properties and antenna radiation patterns, accurate positioning resolutions and macroscopic permittivity estimates are obtained under challenging propagation conditions.
Keywords :
amplitude estimation; antenna radiation patterns; delays; dispersive media; inverse problems; least squares approximations; permittivity measurement; position measurement; radiowave propagation; sensor placement; time-domain analysis; ultra wideband communication; wireless sensor networks; 3D wireless sensor network positioning; amplitude estimation; antenna radiation pattern; dispersive propagation media; electromagnetic propagation data retrieval; environmental complex permittivity; free space positioning method; geometric positioning data retrieval; inversion algorithm; macroscopic permittivity estimation; multipath effect; nonlinear least square problem; optimization; position coordinates; positioning resolution; pulse propagation delay; salient parameter monitoring; time domain positioning measurement; wheat filled storage vessel; wireless node; Positioning; ultrawideband (UWB); wireless sensor;
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
DOI :
10.1109/TIM.2013.2255980