Ibata Yuki, Kitamura Seiji, Motoi Kosuke, Sagawa Koichi
Annu Int Conf IEEE Eng Med Biol Soc. 2013;2013:4891-4. doi: 10.1109/EMBC.2013.6610644.
The measurement method of three-dimensional posture and flying trajectory of lower body during jumping motion using body-mounted wireless inertial measurement units (WIMU) is introduced. The WIMU is composed of three-dimensional (3D) accelerometer and gyroscope of two kinds with different dynamic range and one 3D geomagnetic sensor to adapt to quick movement. Three WIMUs are mounted under the chest, right thigh and right shank. Thin film pressure sensors are connected to the shank WIMU and are installed under right heel and tiptoe to distinguish the state of the body motion between grounding and jumping. Initial and final postures of trunk, thigh and shank at standing-still are obtained using gravitational acceleration and geomagnetism. The posture of body is determined using the 3D direction of each segment updated by the numerical integration of angular velocity. Flying motion is detected from pressure sensors and 3D flying trajectory is derived by the double integration of trunk acceleration applying the 3D velocity of trunk at takeoff. Standing long jump experiments are performed and experimental results show that the joint angle and flying trajectory agree with the actual motion measured by the optical motion capture system.
介绍了一种利用人体佩戴的无线惯性测量单元(WIMU)测量跳跃运动中下半身三维姿态和飞行轨迹的方法。该WIMU由两种具有不同动态范围的三维(3D)加速度计和陀螺仪以及一个3D地磁传感器组成,以适应快速运动。三个WIMU分别安装在胸部、右大腿和右小腿下方。薄膜压力传感器连接到小腿WIMU,并安装在右足跟和脚尖下方,以区分身体在着地和跳跃之间的运动状态。利用重力加速度和地磁获取静止站立时躯干、大腿和小腿的初始和最终姿态。通过对角速度进行数值积分更新各节段的3D方向来确定身体姿态。从压力传感器检测飞行运动,并利用起跳时躯干的3D速度对躯干加速度进行双重积分得出3D飞行轨迹。进行了立定跳远实验,实验结果表明关节角度和飞行轨迹与光学运动捕捉系统测量的实际运动相符。