Positioning applications are being more important in recent years not only for security applications, but also for the mass market. Having a pedestrian navigation system embedded in a mobile phone is a realistic solution since they are equipped with low-cost sensors and handheld is a non-obstructive location. Four different handheld positions can be distinguished, i.e. pocket or bag, phoning, texting and swinging. We present a standalone inertial pocket navigation system. It only requires introducing the inertial measurement unit in the trousers’ pocket and walking freely. For the orientation computation, we have developed an attitude estimator based on an unscented Kalman filter. The update stage has two different updates based on the acce...
Infrastructureless indoor navigation remains a challenging research area in spite of the fact that m...
The use of smartphones for pedestrian positioning applications has become important in recent years....
Abstract Principal component analysis (PCA)-based approach for user heading estimation using a smart...
Inertial navigation systems use dead-reckoning to estimate the pedestrian’s position. There are two ...
Building a complete inertial navigation system using the limited quality data provided by current sm...
Inertial navigation systems use dead-reckoning to estimate the pedestrian's position. There are two ...
Abstract—Heading estimation is a major problem for indoor PDR systems. For PDR systems based on smar...
This paper proposes a pedestrian dead reckoning (PDR) algorithm based on the strap-down inertial nav...
This paper proposes a pedestrian dead reckoning (PDR) algorithm based on the strap-down inertial nav...
Inertial navigation systems for pedestrians are infrastructure-less and can achieve sub-meter accura...
This paper proposes a novel heading estimation approach for indoor pedestrian navigation using the b...
This paper proposes a novel heading estimation approach for indoor pedestrian navigation using the b...
Inertial navigation systems for pedestrians are infrastructure-less and can achieve sub-meter accura...
Even though technology-aided pedestrian navigation is an extensively studied research topic, a comme...
Today the Global Positioning System (GPS) is widely used in the estimation of position. But the GPS ...
Infrastructureless indoor navigation remains a challenging research area in spite of the fact that m...
The use of smartphones for pedestrian positioning applications has become important in recent years....
Abstract Principal component analysis (PCA)-based approach for user heading estimation using a smart...
Inertial navigation systems use dead-reckoning to estimate the pedestrian’s position. There are two ...
Building a complete inertial navigation system using the limited quality data provided by current sm...
Inertial navigation systems use dead-reckoning to estimate the pedestrian's position. There are two ...
Abstract—Heading estimation is a major problem for indoor PDR systems. For PDR systems based on smar...
This paper proposes a pedestrian dead reckoning (PDR) algorithm based on the strap-down inertial nav...
This paper proposes a pedestrian dead reckoning (PDR) algorithm based on the strap-down inertial nav...
Inertial navigation systems for pedestrians are infrastructure-less and can achieve sub-meter accura...
This paper proposes a novel heading estimation approach for indoor pedestrian navigation using the b...
This paper proposes a novel heading estimation approach for indoor pedestrian navigation using the b...
Inertial navigation systems for pedestrians are infrastructure-less and can achieve sub-meter accura...
Even though technology-aided pedestrian navigation is an extensively studied research topic, a comme...
Today the Global Positioning System (GPS) is widely used in the estimation of position. But the GPS ...
Infrastructureless indoor navigation remains a challenging research area in spite of the fact that m...
The use of smartphones for pedestrian positioning applications has become important in recent years....
Abstract Principal component analysis (PCA)-based approach for user heading estimation using a smart...