International audienceGNSS localization is accurate in clear environment where the pseudorange noise distributions are assumed white- Gaussian. But in constricted environment, e.g. dense urban environment, because of the signal reflections on the surrounding obstacles, this assumption cannot be used and accuracy and continuity of service of GNSS receivers are strongly degraded. To enhance the localization performances, we propose to use Dirichlet Process Mixtures to model the pseudorange error density at each acquisition step. Next, this estimation will be used in Rao-Blackwellized Particle Filter to compute the position. This sequential estimation is adapted when the noise is non-stationary. This approach will be tested on real data acquir...
International audienceThe reception state of a satellite is an unavailable information for Global Na...
International audienceStand-alone GNSS positioning is challenged to meet the applications’ demanded ...
Les GNSS sont désormais largement présents dans le domaine des transports. Actuellement, la communau...
International audienceGNSS localization is accurate in clear environment where the pseudorange noise...
International audienceIn satellite navigation system, classical localization algorithms assume that ...
International audienceIn Global Navigation Satellite Systems (GNSS) positioning, the receiver measur...
In Global Positioning System (GPS), classical localization algorithms assume, when the signal is rec...
International audienceIn global positioning systems (GPS), classical localization algorithms assume,...
Today, the GNSS are largely present in the transport field. Currently, the scientific community aims...
International audienceThe Dirichlet Process Mixture (DPM) models represent an attractive approach to...
Abstract — The reception state of a satellite is an unavailable information for Global Navigation Sa...
In urban areas or space-constrained environments with obstacles, vehicle localization using Global N...
International audienceThe reception state of a satellite is an unavailable information for Global Na...
International audienceStand-alone GNSS positioning is challenged to meet the applications’ demanded ...
Les GNSS sont désormais largement présents dans le domaine des transports. Actuellement, la communau...
International audienceGNSS localization is accurate in clear environment where the pseudorange noise...
International audienceIn satellite navigation system, classical localization algorithms assume that ...
International audienceIn Global Navigation Satellite Systems (GNSS) positioning, the receiver measur...
In Global Positioning System (GPS), classical localization algorithms assume, when the signal is rec...
International audienceIn global positioning systems (GPS), classical localization algorithms assume,...
Today, the GNSS are largely present in the transport field. Currently, the scientific community aims...
International audienceThe Dirichlet Process Mixture (DPM) models represent an attractive approach to...
Abstract — The reception state of a satellite is an unavailable information for Global Navigation Sa...
In urban areas or space-constrained environments with obstacles, vehicle localization using Global N...
International audienceThe reception state of a satellite is an unavailable information for Global Na...
International audienceStand-alone GNSS positioning is challenged to meet the applications’ demanded ...
Les GNSS sont désormais largement présents dans le domaine des transports. Actuellement, la communau...