In this paper, bias and CRB analysis for both proposed line-of-sight (LoS) and conventional radio-signal-strength (RSS) based positioning methods are derived. In contrast to the conventional lognormal based analysis, the derived error models take into account the environmental multipath fading effect. The proposed LoS-based scheme improves positioning accuracy by eliminating the effect of non-range dependent portion of powers from the received signal. It suppresses non-line-of-sight (NLoS) disturbance to the positioning result through estimating the LoS component from fading signal. Hence, it is robust to environmental fading disturbance. The derived error models are validated by simulation. Both analytical model and simulation results show...
Radio frequency wireless technology is surely one of the most used technologies in indoor localizati...
AbstractReceived signal strength (RSS) is used in wireless networks as a ranging measurement for pos...
Mobile positioning is one of the fastest growing areas for the development of new technologies, serv...
In this paper, bias and Cramer-Rao bound (CRB) analyses for both proposed line of sight (LoS)-Based ...
[[abstract]]Referring received signal strength (RSS) to a signal propagation model to find user loca...
Among the various ranging techniques, Radio Signal Strength (RSS) based approaches attract intensive...
Positioning of wireless devices has received a great deal of interest from researchers in the last d...
The accuracy of location methods based on received signal strength (RSS) measurements is highly vari...
This paper presents an analysis of WiMAX positioning by using received-signal-strength (RSS) method....
This paper presents an analysis of WiMAX positioning by using received-signal-strength (RSS) method....
This paper presents an analysis of WiMAX positioning by using received-signal-strength (RSS) method....
This paper provides an asymptotic performance evaluation of network based or multilateral radio loca...
Restricted until 14 Dec. 2008.Non-Line of Sight (NLOS) error is usually the largest cause of degrada...
The term \u201cranging\u201d is often used to indicate the operations that make it possible to estim...
Due to robustness against multi-path effect, channel state information (CSI) of Orthogonal Frequency...
Radio frequency wireless technology is surely one of the most used technologies in indoor localizati...
AbstractReceived signal strength (RSS) is used in wireless networks as a ranging measurement for pos...
Mobile positioning is one of the fastest growing areas for the development of new technologies, serv...
In this paper, bias and Cramer-Rao bound (CRB) analyses for both proposed line of sight (LoS)-Based ...
[[abstract]]Referring received signal strength (RSS) to a signal propagation model to find user loca...
Among the various ranging techniques, Radio Signal Strength (RSS) based approaches attract intensive...
Positioning of wireless devices has received a great deal of interest from researchers in the last d...
The accuracy of location methods based on received signal strength (RSS) measurements is highly vari...
This paper presents an analysis of WiMAX positioning by using received-signal-strength (RSS) method....
This paper presents an analysis of WiMAX positioning by using received-signal-strength (RSS) method....
This paper presents an analysis of WiMAX positioning by using received-signal-strength (RSS) method....
This paper provides an asymptotic performance evaluation of network based or multilateral radio loca...
Restricted until 14 Dec. 2008.Non-Line of Sight (NLOS) error is usually the largest cause of degrada...
The term \u201cranging\u201d is often used to indicate the operations that make it possible to estim...
Due to robustness against multi-path effect, channel state information (CSI) of Orthogonal Frequency...
Radio frequency wireless technology is surely one of the most used technologies in indoor localizati...
AbstractReceived signal strength (RSS) is used in wireless networks as a ranging measurement for pos...
Mobile positioning is one of the fastest growing areas for the development of new technologies, serv...