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Spatiotemporal and Kinetic Gait Analysis System Based on Multisensor Fusion of Laser Range Sensor and Instrumented Insoles

机译:基于激光测距传感器和仪器鞋垫多传感器融合的时空运动步态分析系统

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Tracking of human legs during walking are key technologies for gait analysis evaluating the movement function of the elderly and patients with gait disorders. Although the motion capture cameras are the gold standard method for gait analysis because of their high accuracy, they are not always accessible in clinical sites because of their cost, scale, and usability. In response, a laser range sensor (LRS), which is used for obstacle avoidance and human detection of mobile robots, has recently been employed for tracking of leg motions. Some previous studies set LRS at shin height and tracked leg motions during walking using three or five observation patterns and the Kalman filtering and data association methods. However, these systems had difficulty in tracking during walking along a circular trajectory including frequent overlaps and occlusions of legs. Therefore, this paper presents a spatiotemporal and kinetic gait analysis system using a single LRS and instrumented insoles and proposes a multisensor fusion algorithm for tracking leg motions. The instrumented insoles are in-shoe devices embedded force sensors and can detect accurate timings of gait events via force sensing. The system identifies gait phases by the fusion algorithm and switches acceleration input added to motion models of tracked legs for the Kalman filter and data association. The tracking performance of the proposed system was evaluated by measuring walking on a circular trajectory in experiments.
机译:步行过程中跟踪人的腿是步态分析的关键技术,可评估老年人和步态障碍患者的运动功能。尽管运动捕捉相机由于其高精度而成为步态分析的黄金标准方法,但由于其成本,规模和可用性,它们并不总是可以在临床现场使用。作为响应,近来已经采用了激光范围传感器(LRS),其用于避开障碍物和对移动机器人进行人工检测,用于跟踪腿部运动。先前的一些研究使用三个或五个观察模式以及卡尔曼滤波和数据关联方法将LRS设置在胫骨高度并跟踪步行过程中的腿部运动。然而,这些系统在沿着包括经常重叠和双腿闭塞的圆形轨迹的行走过程中难以跟踪。因此,本文提出了一种使用单个LRS和仪器化鞋垫的时空和动力学步态分析系统,并提出了一种用于跟踪腿部运动的多传感器融合算法。所插入的鞋垫是鞋内设备中嵌入的力传感器,可以通过力感测来检测步态事件的准确时间。该系统通过融合算法识别步态相位,并切换添加到跟踪腿运动模型中的加速度输入,以进行卡尔曼滤波器和数据关联。通过在实验中测量沿圆形轨迹的行走来评估所提出系统的跟踪性能。

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