Tracking human body motions using inertial sensors has become a well-accepted method in ambulatory applications since the subject is not confined to a lab-bounded volume. However, a major drawback is the inability to estimate relative body positions over time because inertial sensor information only allows position tracking through strapdown integration, but doesn’t provide any information about relative positions. In addition, strapdown integration inherently results in drift of the estimated position over time. We propose a novel method in which a permanent magnet combined with 3D magnetometers and 3D inertial sensors are used to estimate the global trunk orientation and relative pose of the hand with respect to the trunk. An Extended Kal...
Measuring hand and finger movements, and interaction forces, is important for the assessment of task...
In inertial human motion capture, a multitude of body segments are equipped with inertial measuremen...
One of the key technologies that lays behind the human–machine interaction and human motion diagnosi...
Tracking human body motions using inertial sensors has become a well-accepted method in ambulatory a...
Tracking human body motions using inertial sensors has become a well-accepted method in ambulatory a...
Over the last years, inertial sensing has proven to be a suitable ambulatory alternative to traditio...
The correct estimation of human hand kinematics has received a lot of attention in many research fie...
A novel instrumentation is proposed to estimate hand and finger movements. Current dataglove systems...
Inertial and magnetic sensors are very suitable for ambulatory monitoring of human posture and movem...
User-worn sensing units composed of inertial and magnetic sensors are becoming increasingly popular ...
This paper presents the design and testing of a portable magnetic system combined with miniature ine...
Magnetic and inertial measurement units are an emerging technology to obtain 3D orientation of body ...
Magnetic and inertial measurement units are an emerging technology to obtain 3D orientation of body ...
Measuring hand and finger movements, and interaction forces, is important for the assessment of task...
In inertial human motion capture, a multitude of body segments are equipped with inertial measuremen...
One of the key technologies that lays behind the human–machine interaction and human motion diagnosi...
Tracking human body motions using inertial sensors has become a well-accepted method in ambulatory a...
Tracking human body motions using inertial sensors has become a well-accepted method in ambulatory a...
Over the last years, inertial sensing has proven to be a suitable ambulatory alternative to traditio...
The correct estimation of human hand kinematics has received a lot of attention in many research fie...
A novel instrumentation is proposed to estimate hand and finger movements. Current dataglove systems...
Inertial and magnetic sensors are very suitable for ambulatory monitoring of human posture and movem...
User-worn sensing units composed of inertial and magnetic sensors are becoming increasingly popular ...
This paper presents the design and testing of a portable magnetic system combined with miniature ine...
Magnetic and inertial measurement units are an emerging technology to obtain 3D orientation of body ...
Magnetic and inertial measurement units are an emerging technology to obtain 3D orientation of body ...
Measuring hand and finger movements, and interaction forces, is important for the assessment of task...
In inertial human motion capture, a multitude of body segments are equipped with inertial measuremen...
One of the key technologies that lays behind the human–machine interaction and human motion diagnosi...