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Markerless Human Motion Tracking Using Microsoft Kinect SDK and Inverse Kinematics

机译:使用Microsoft Kinect SDK和逆运动学无标记人体运动跟踪

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Motion capture systems are used to gauge the kinematic features of the motion in numerous fields of research. Despite superb accuracy performance, the commercial systems are costly and difficult to use. To solve these issues, Kinect has been proposed as a low-priced markerless motion capture sensor, and its accuracy has been assessed using previous motion capture systems. However, in many of these studies, the anatomical joint angles captured using the Kinect are compared to the 3D rotation angles reported by the gold standard motion capture systems. These incompatibilities in the determination of the human joint angles can lead to higher error estimation. To accomplish a valid accuracy evaluation of the Kinect, we applied the inverse kinematics techniques in both Vicon and Kinect version 2 skeleton models to estimate lower body joint angles. The proposed method enabled us to capture the pelvic, hip, and knee joint angles using a single Kinect camera during gait. Moreover, the dependency of the proposed method to the position of the Kinect and the speed of the moving subject was investigated. In this study, the captured data of the Vicon motion capture system were used as ground-truth to assess the accuracy of the Kinect data. The results indicate the capability of Kinect in capturing human joint angles and also an affordable motion capture system applied in robotics and biomechanics applications.
机译:运动捕获系统用于衡量众多研究领域的运动的运动特征。尽管精度高精度的性能,但商业系统昂贵且难以使用。为了解决这些问题,已经提出了Kinect作为低价无标记运动捕获传感器,并且通过先前的运动捕获系统评估了其精度。然而,在许多这些研究中,使用Kinect捕获的解剖学关节角度与由金标准运动捕获系统报告的3D旋转角进行比较。这些不兼容性在确定人的关节角度时可以导致更高的误差估计。为了完成Kinect的有效准确性评估,我们在Vicon和Kinect版本2骨架模型中应用了逆运动学技术,以估计较低的身体关节角度。所提出的方法使我们能够在步态期间使用单个Kinect相机捕获盆腔,臀部和膝关节角。此外,研究了所提出的方法对kinect的位置和移动对象的速度的依赖性。在本研究中,VICON运动捕获系统的捕获数据被用作地面真理,以评估Kinect数据的准确性。结果表明了Kinect在捕获人的关节角度以及应用于机器人和生物力学应用中的实惠的运动捕获系统的能力。

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