An inertial measurement unit-based pedestrian navigation system that relies on the intelligent learning algorithm is useful for various applications, especially under some severe conditions, such as the tracking of firefighters and miners. Due to the complexity of the indoor environment, signal occlusion problems could lead to the failure of certain positioning methods. In complex environments, such as those involving fire rescue and emergency rescue, the barometric altimeter fails because of the influence of air pressure and temperature. This paper used an optimal gait recognition algorithm to improve the accuracy of gait detection. Then a learning-based moving direction determination method was proposed. With the Kalman filter and a zero-...
Spatial mobility provides a rich context for human life, and the demand for indoor navigation and lo...
International audienceThis paper proposes a foot-mounted Zero Velocity Update (ZVU) aided Inertial M...
In this paper, we present a novel method for 3D pedestrian navigation of foot-mounted inertial syste...
International audienceThis paper presents a pedestrian navigation algorithm based on a foot-mounted ...
International audienceThis paper presents a pedestrian navigation algorithm based on a foot-mounted ...
This paper is devoted to construction of reference walking trajectories for developing pedestrian na...
International audienceThis paper presents a pedestrian navigation algorithm based on a foot-mounted ...
We consider personal navigation systems in devices equipped with inertial sensors and GPS, where we ...
We consider personal navigation systems in devices equipped with inertial sensors and GPS, where we ...
Pedestrian navigation in body-worn devices is usually based on global navigation satellite systems (...
Pedestrian navigation in body-worn devices is usually based on global navigation satellite systems (...
International audienceThis paper proposes a foot-mounted Zero Velocity Update (ZVU) aided Inertial M...
In this paper, an algorithm to estimate the position of a pedestrian in a 3-dimensional space is int...
In this paper, an algorithm to estimate the position of a pedestrian in a 3-dimensional space is int...
Pedestrian navigation in body-worn devices is usually based on global navigation satellite systems (...
Spatial mobility provides a rich context for human life, and the demand for indoor navigation and lo...
International audienceThis paper proposes a foot-mounted Zero Velocity Update (ZVU) aided Inertial M...
In this paper, we present a novel method for 3D pedestrian navigation of foot-mounted inertial syste...
International audienceThis paper presents a pedestrian navigation algorithm based on a foot-mounted ...
International audienceThis paper presents a pedestrian navigation algorithm based on a foot-mounted ...
This paper is devoted to construction of reference walking trajectories for developing pedestrian na...
International audienceThis paper presents a pedestrian navigation algorithm based on a foot-mounted ...
We consider personal navigation systems in devices equipped with inertial sensors and GPS, where we ...
We consider personal navigation systems in devices equipped with inertial sensors and GPS, where we ...
Pedestrian navigation in body-worn devices is usually based on global navigation satellite systems (...
Pedestrian navigation in body-worn devices is usually based on global navigation satellite systems (...
International audienceThis paper proposes a foot-mounted Zero Velocity Update (ZVU) aided Inertial M...
In this paper, an algorithm to estimate the position of a pedestrian in a 3-dimensional space is int...
In this paper, an algorithm to estimate the position of a pedestrian in a 3-dimensional space is int...
Pedestrian navigation in body-worn devices is usually based on global navigation satellite systems (...
Spatial mobility provides a rich context for human life, and the demand for indoor navigation and lo...
International audienceThis paper proposes a foot-mounted Zero Velocity Update (ZVU) aided Inertial M...
In this paper, we present a novel method for 3D pedestrian navigation of foot-mounted inertial syste...