Magnetic-Inertial Measurement Units (MIMUs) based on microelectromechanical (MEMS) technologies are widespread in contexts such as human motion tracking. Although they present several advantages (lightweight, size, cost), their orientation estimation accuracy might be poor. Indoor magnetic disturbances represent one of the limiting factors for their accuracy, and, therefore, a variety of work was done to characterize and compensate them. In this paper, the main compensation strategies included within Kalman-based orientation estimators are surveyed and classified according to which degrees of freedom are affected by the magnetic data and to the magnetic disturbance rejection methods implemented. By selecting a representative method from eac...
International audienceThis paper studies heading estimation jointly with the attitude and position e...
This paper describes a Kalman filter design to estimate orientation of human body segments by fusing...
This paper describes a Kalman filter design to estimate orientation of human body segments by fusing...
Magnetic-Inertial Measurement Units (MIMUs) based on microelectromechanical (MEMS) technologies are ...
Magnetic-Inertial Measurement Units (MIMUs) based on microelectromechanical (MEMS) technologies are ...
Magnetic-Inertial Measurement Units (MIMUs) based on microelectromechanical (MEMS) technologies are ...
Magnetic-Inertial Measurement Units (MIMUs) based on microelectromechanical (MEMS) technologies are ...
Magnetic-Inertial Measurement Units (MIMUs) based on microelectromechanical (MEMS) technologies are ...
Magnetic-Inertial Measurement Units (MIMUs) based on microelectromechanical (MEMS) technologies are ...
Magnetic-Inertial Measurement Units (MIMUs) based on microelectromechanical (MEMS) technologies are ...
This paper describes a complementary Kalman filter design to estimate orientation of human body segm...
With the advancements in micro-electromechanical systems (MEMS) technologies, magnetic and inertial ...
Inertial and magnetic sensors are very suitable for ambulatory monitoring of human posture and movem...
Abstract—This paper describes a complementary Kalman filter design to estimate orientation of human ...
Magneto-inertial measurement units (MIMUs) are a promising way to perform human motion analysis outs...
International audienceThis paper studies heading estimation jointly with the attitude and position e...
This paper describes a Kalman filter design to estimate orientation of human body segments by fusing...
This paper describes a Kalman filter design to estimate orientation of human body segments by fusing...
Magnetic-Inertial Measurement Units (MIMUs) based on microelectromechanical (MEMS) technologies are ...
Magnetic-Inertial Measurement Units (MIMUs) based on microelectromechanical (MEMS) technologies are ...
Magnetic-Inertial Measurement Units (MIMUs) based on microelectromechanical (MEMS) technologies are ...
Magnetic-Inertial Measurement Units (MIMUs) based on microelectromechanical (MEMS) technologies are ...
Magnetic-Inertial Measurement Units (MIMUs) based on microelectromechanical (MEMS) technologies are ...
Magnetic-Inertial Measurement Units (MIMUs) based on microelectromechanical (MEMS) technologies are ...
Magnetic-Inertial Measurement Units (MIMUs) based on microelectromechanical (MEMS) technologies are ...
This paper describes a complementary Kalman filter design to estimate orientation of human body segm...
With the advancements in micro-electromechanical systems (MEMS) technologies, magnetic and inertial ...
Inertial and magnetic sensors are very suitable for ambulatory monitoring of human posture and movem...
Abstract—This paper describes a complementary Kalman filter design to estimate orientation of human ...
Magneto-inertial measurement units (MIMUs) are a promising way to perform human motion analysis outs...
International audienceThis paper studies heading estimation jointly with the attitude and position e...
This paper describes a Kalman filter design to estimate orientation of human body segments by fusing...
This paper describes a Kalman filter design to estimate orientation of human body segments by fusing...