TY - JOUR
T1 - Weight measurement using image-based pose analysis
AU - Zhang, Hong
AU - Zhang, Kui
AU - Mu, Ying
AU - Yao, Ning
AU - Sclabassi, Robert J.
AU - Sun, Mingui
PY - 2008/12
Y1 - 2008/12
N2 - Image-based gait analysis as a means of biometric identification has attracted much research attention. Most of the existing methods focus on human identification, posture analysis and movement tracking. There have been few investigations on measuring the carried load based on the carrier's gait characteristics by automatic image processing. Nevertheless, this measurement is very useful in a number of applications, such as the study of the carried load on the postural development of children and adolescence. In this paper, we investigate how to automatically estimate the carried weight from a sequence of images. We present a method to extract human gait silhouette based on an observation that humans tend to minimize the energy during motion. We compute several angles of body leaning and determine the relationship of the carried weight, the leaning angles and the centroid location according to a human kinetic study. Our weight determination method has been verified successfully by experiments.
AB - Image-based gait analysis as a means of biometric identification has attracted much research attention. Most of the existing methods focus on human identification, posture analysis and movement tracking. There have been few investigations on measuring the carried load based on the carrier's gait characteristics by automatic image processing. Nevertheless, this measurement is very useful in a number of applications, such as the study of the carried load on the postural development of children and adolescence. In this paper, we investigate how to automatically estimate the carried weight from a sequence of images. We present a method to extract human gait silhouette based on an observation that humans tend to minimize the energy during motion. We compute several angles of body leaning and determine the relationship of the carried weight, the leaning angles and the centroid location according to a human kinetic study. Our weight determination method has been verified successfully by experiments.
KW - Energy minimization
KW - Image-based pose analysis
KW - Load carrying measurement
KW - Pattern recognition
UR - https://www.scopus.com/pages/publications/57949093513
U2 - 10.1016/j.pnsc.2008.04.011
DO - 10.1016/j.pnsc.2008.04.011
M3 - 文章
AN - SCOPUS:57949093513
SN - 1002-0071
VL - 18
SP - 1507
EP - 1512
JO - Progress in Natural Science: Materials International
JF - Progress in Natural Science: Materials International
IS - 12
ER -