Title :
An extended GSCM for mobile radio based positioning in outdoor-to-indoor environment
Author :
Wei Wang ; Jost, Thomas ; Fiebig, Uwe-Carsten
Author_Institution :
Inst. of Commun. & Navig., German Aerosp. Center (DLR), Wessling, Germany
Abstract :
To develop and validate mobile radio based positioning algorithms under realistic conditions, an accurate description of the propagation channel is of significant importance. However, there is still a lack of outdoor-to-indoor channel models suitable for positioning applications. Two requirements for the channel model to be used for positioning have not been accurately considered yet: the non line-of-sight bias (affecting ranging accuracy) and the evolution of multipath components (MPCs) with time (affecting tracking performance). In this paper an outdoor-to-indoor channel model is proposed based on an extended geometry-based stochastic approach to fulfill the above mentioned requirements. We consider MPCs occurring due to reflection, scattering and combinations of both. Three different types of MPCs are individually defined and modeled according to their characteristics. Each MPC is represented by a virtual scatterer which has a fixed position while the receive antenna is moving.
Keywords :
electromagnetic wave reflection; electromagnetic wave scattering; indoor radio; mobile radio; radionavigation; stochastic processes; wireless channels; MPC; extended GSCM; extended geometry-based stochastic approach; geometry-based stochastic channel model; mobile radio based positioning algorithm; multipath components; nonline-of-sight bias; outdoor-to-indoor channel models; outdoor-to-indoor environment; propagation channel; receive antenna; reflection; scattering; Channel models; Delays; Land mobile radio; Receivers; Scattering; Transmitters; Visualization;
Conference_Titel :
General Assembly and Scientific Symposium (URSI GASS), 2014 XXXIth URSI
Conference_Location :
Beijing
DOI :
10.1109/URSIGASS.2014.6929363