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人体行走过程中的位置跟踪采用集成可穿戴传感系统。

Position Tracking During Human Walking Using an Integrated Wearable Sensing System.

机构信息

School of Mechanical, Aerospace and Civil Engineering, University of Manchester, Manchester M13 9PL, UK.

出版信息

Sensors (Basel). 2017 Dec 10;17(12):2866. doi: 10.3390/s17122866.

Abstract

Progress has been made enabling expensive, high-end inertial measurement units (IMUs) to be used as tracking sensors. However, the cost of these IMUs is prohibitive to their widespread use, and hence the potential of low-cost IMUs is investigated in this study. A wearable low-cost sensing system consisting of IMUs and ultrasound sensors was developed. Core to this system is an extended Kalman filter (EKF), which provides both zero-velocity updates (ZUPTs) and Heuristic Drift Reduction (HDR). The IMU data was combined with ultrasound range measurements to improve accuracy. When a map of the environment was available, a particle filter was used to impose constraints on the possible user motions. The system was therefore composed of three subsystems: IMUs, ultrasound sensors, and a particle filter. A Vicon motion capture system was used to provide ground truth information, enabling validation of the sensing system. Using only the IMU, the system showed loop misclosure errors of 1% with a maximum error of 4-5% during walking. The addition of the ultrasound sensors resulted in a 15% reduction in the total accumulated error. Lastly, the particle filter was capable of providing noticeable corrections, which could keep the tracking error below 2% after the first few steps.

摘要

已经取得了进展,使得昂贵的高端惯性测量单元(IMU)能够被用作跟踪传感器。然而,这些 IMU 的成本高得令人望而却步,因此本研究探讨了低成本 IMU 的潜力。本研究开发了一种由 IMU 和超声传感器组成的可穿戴式低成本传感系统。该系统的核心是扩展卡尔曼滤波器(EKF),它提供了零速度更新(ZUPT)和启发式漂移减少(HDR)。IMU 数据与超声距离测量相结合,以提高精度。当有环境地图时,使用粒子滤波器对可能的用户运动施加约束。因此,该系统由三个子系统组成:IMU、超声传感器和粒子滤波器。Vicon 运动捕捉系统用于提供地面实况信息,从而验证传感系统。仅使用 IMU,系统在行走时的环路闭合误差为 1%,最大误差为 4-5%。添加超声传感器可将总累计误差减少 15%。最后,粒子滤波器能够提供显著的校正,使跟踪误差在最初几步后保持在 2%以下。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79c6/5751554/d91ecb473703/sensors-17-02866-g0A1.jpg

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