Human Motion Capture Driven by Orientation Measurements
- 1 April 1999
- journal article
- Published by MIT Press in PRESENCE: Virtual and Augmented Reality
- Vol. 8 (2) , 187-203
- https://doi.org/10.1162/105474699566161
Abstract
Motion-capture techniques are rarely based on orientation measurements for two main reasons: (1) optical motion-capture systems are designed for tracking object position rather than their orientation (which can be deduced from several trackers), (2) known animation techniques, like inverse kinematics or geometric algorithms, require position targets constantly, but orientation inputs only occasionally. We propose a complete human motion-capture technique based essentially on orientation measurements. The position measurement is used only for recovering the global position of the performer. This method allows fast tracking of human gestures for interactive applications as well as high rate recording. Several motion-capture optimizations, including the multijoint technique, improve the posture realism. This work is well suited for magnetic-based systems that rely more on orientation registration (in our environment) than position measurements that necessitate difficult system calibration.Keywords
This publication has 6 references indexed in Scilit:
- Mapping Algorithms for Real-Time Control of an Avatar Using Eight SensorsPRESENCE: Virtual and Augmented Reality, 1998
- Magnetic Tracker Calibration for Improved Augmented Reality RegistrationPRESENCE: Virtual and Augmented Reality, 1997
- Real-Time Inverse Kinematics of the Human ArmPRESENCE: Virtual and Augmented Reality, 1996
- A Body Model Server for Human Motion Capture and RepresentationPRESENCE: Virtual and Augmented Reality, 1996
- Real-Time Control of a Virtual Human Using Minimal SensorsPRESENCE: Virtual and Augmented Reality, 1993
- An anatomy-based coordinate system for the description of the kinematic displacements in the human kneeJournal of Biomechanics, 1990