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一种用于提高Kinect v2中关节到地面距离跟踪准确性的改进技术,用于检测离地和着地。

An improved technique for increasing the accuracy of joint-to-ground distance tracking in kinect v2 for foot-off and foot contact detection.

作者信息

Amini Amin, Banitsas Konstantinos

机构信息

a College of Engineering Design and Physical Sciences, Department of Electronics and Computer Engineering , Brunel University London , Uxbridge , United Kingdom of Great Britain and Northern Ireland.

出版信息

J Med Eng Technol. 2019 Jan;43(1):8-18. doi: 10.1080/03091902.2019.1595762. Epub 2019 Apr 15.

Abstract

The Kinect sensor has been widely used in different applications such as rehabilitation and gait analysis. Whilst Kinect v2 was released with several improvements over its predecessor, it still incorporates depth-map intrinsic inaccuracies. This results in inconsistencies in skeletal-data acquisition, especially in joint localisation and distance-to-ground tracking with respect to the Kinect's 3-D Cartesian coordinate reference point. This research proposes a correction technique based on the two-point linear equation derived from the information gathered from different subjects' skeletal data and data regression analysis to compensate the inaccuracies in joint-to-ground data collection. The research also proposes a new footsteps detection method based on skeletal data and plane detection techniques that calculates a footstep by using the ankle's Euclidean distance from the floor, regardless of the subject's distance from the camera. The results show that after the correction technique was applied, data acquisition proved to be consistent and more accurate within a distance range of 1.6-2.9 m from the Kinect camera, regardless of the subject's location to the camera's reference point. Moreover, the inconsistency of joint data read by the Kinect was reduced from 25.69% to 5.25% and the footsteps detection accuracy increased from 42.85% to 79.76% on average for both legs.

摘要

Kinect传感器已广泛应用于康复和步态分析等不同领域。虽然Kinect v2在其前身的基础上有了多项改进,但它仍然存在深度图固有误差。这导致骨骼数据采集出现不一致,特别是在关节定位以及相对于Kinect的三维笛卡尔坐标参考点的离地距离跟踪方面。本研究提出一种校正技术,该技术基于从不同受试者的骨骼数据收集的信息和数据回归分析得出的两点线性方程,以补偿关节到地面数据采集中的误差。该研究还提出了一种基于骨骼数据和平面检测技术的新的脚步检测方法,该方法通过使用脚踝到地面的欧几里得距离来计算脚步,而不管受试者与相机的距离如何。结果表明,应用校正技术后,在距离Kinect相机1.6 - 2.9米的范围内,无论受试者相对于相机参考点的位置如何,数据采集都被证明是一致且更准确的。此外,Kinect读取的关节数据的不一致性从25.69%降低到5.25%,双腿的脚步检测准确率平均从42.85%提高到79.76%。

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