Title :
Adaptive sensor data fusion in motion capture
Author :
Shuyan Sun ; Xiaoli Meng ; Lianying Ji ; Jiankang Wu ; Wai-Choong Wong
Author_Institution :
Grad. Univ. of Chinese Acad. of Sci., Beijing, China
Abstract :
Micro-sensor human motion capture has shown its potentials because of its ubiquity and low cost. One of the biggest challenges in micro-sensor motion estimation is the drift problem caused by integration of angular rates to obtain orientation. To reduce the drift, existing algorithms make use of gravity and earth magnetic filed measured by accelerometers and magnetometers respectively. Unfortunately, body segment acceleration and environment magnetic disturbance produce strong interferences to the gravity and earth magnetic field measurement respectively. This paper presents a novel sensor fusion algorithm for drift-free orientation estimation, where a quaternion-based complementary Kalman filter is designed. To optimize the performance under interference, this filter fuses gyroscope, accelerometer and magnetometer signals adaptively based on their information confidence, which are evaluated by computing their interference level. The proposed algorithm showed least error compared with the existing methods in the quantitative experiments, and its effectiveness was also verified by the stable and accurate human motion estimation.
Keywords :
Kalman filters; accelerometers; gyroscopes; interference (signal); magnetic field measurement; magnetometers; microsensors; motion estimation; sensor fusion; accelerometer; adaptive sensor data fusion; angular rate; body segment acceleration; drift-free orientation estimation; earth magnetic field measurement; environment magnetic disturbance; gravity measurement; gyroscope; interference level; magnetometer; microsensor human motion capture; microsensor motion estimation; quaternion-based complementary Kalman filter; Accelerometers; Earth; Gravity; Gyroscopes; Magnetic separation; Magnetometers; Quaternions; Kalman filtering; Sensor fusion; adaptive weighting; drift; human motion capture;
Conference_Titel :
Information Fusion (FUSION), 2010 13th Conference on
Conference_Location :
Edinburgh
Print_ISBN :
978-0-9824438-1-1
DOI :
10.1109/ICIF.2010.5711994