A pedestrian inertial navigation system is typically used to suppress the Global Navigation Satellite System limitation to track persons in indoor or in dense environments. However, low- cost inertial systems provide huge location estimation errors due to sensors and pedestrian dead reckoning inherent characteristics. To suppress some of these errors we propose a system that uses two inertial measurement units spread in person’s body, which measurements are aggregated using learning algorithms that learn the gait behaviors. In this work we present our results on using different machine learning algorithms which are used to characterize the step according to its direction and length. This characterization is then used to adapt the navigation...
International audienceThis paper presents a pedestrian navigation algorithm based on a foot-mounted ...
Inertial navigation systems use dead-reckoning to estimate the pedestrian's position. There are two ...
This paper presents a pedestrian indoor navigation system based on the multi-sensor fusion and fuzzy...
A pedestrian inertial navigation system is typically used to suppress the Global Navigation Satellit...
The primary source for pedestrian navigation is the well known Global Positioning System. However, f...
This paper presents a method for an indoor pedestrian localization, based on the data ...
Nowadays there is an increase of location-aware mobile applications. However, these applications on...
We consider the human localization problem using body-worn inertial/magnetic sensor units. Inertial ...
One of the main challenges of navigation systems is the inability of orientation and insufficient lo...
International audienceMiniaturized IMU (inertial measurement units) are widely integrated in wearabl...
Nowadays there is an increase of location-aware mobile applications. However, these applications onl...
Nowadays the incredible grow of mobile devices market led to the need for location-aware applicatio...
Cataloged from PDF version of article.We consider the human localization problem using body-worn ine...
AbstractThis paper presents an ankle mounted Inertial Navigation System (INS) used to estimate the d...
The integration of low cost microelectromagnetic (MEM) sensors into smart phones have made inertial ...
International audienceThis paper presents a pedestrian navigation algorithm based on a foot-mounted ...
Inertial navigation systems use dead-reckoning to estimate the pedestrian's position. There are two ...
This paper presents a pedestrian indoor navigation system based on the multi-sensor fusion and fuzzy...
A pedestrian inertial navigation system is typically used to suppress the Global Navigation Satellit...
The primary source for pedestrian navigation is the well known Global Positioning System. However, f...
This paper presents a method for an indoor pedestrian localization, based on the data ...
Nowadays there is an increase of location-aware mobile applications. However, these applications on...
We consider the human localization problem using body-worn inertial/magnetic sensor units. Inertial ...
One of the main challenges of navigation systems is the inability of orientation and insufficient lo...
International audienceMiniaturized IMU (inertial measurement units) are widely integrated in wearabl...
Nowadays there is an increase of location-aware mobile applications. However, these applications onl...
Nowadays the incredible grow of mobile devices market led to the need for location-aware applicatio...
Cataloged from PDF version of article.We consider the human localization problem using body-worn ine...
AbstractThis paper presents an ankle mounted Inertial Navigation System (INS) used to estimate the d...
The integration of low cost microelectromagnetic (MEM) sensors into smart phones have made inertial ...
International audienceThis paper presents a pedestrian navigation algorithm based on a foot-mounted ...
Inertial navigation systems use dead-reckoning to estimate the pedestrian's position. There are two ...
This paper presents a pedestrian indoor navigation system based on the multi-sensor fusion and fuzzy...