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Fusion of Inertial/Magnetic Sensor Measurements and Map Information for Pedestrian Tracking

机译:惯性/磁传感器测量值与地图信息的融合,用于行人跟踪

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The wearable inertial/magnetic sensor based human motion analysis plays an important role in many biomedical applications, such as physical therapy, gait analysis and rehabilitation. One of the main challenges for the lower body bio-motion analysis is how to reliably provide position estimations of human subject during walking. In this paper, we propose a particle filter based human position estimation method using a foot-mounted inertial and magnetic sensor module, which not only uses the traditional zero velocity update (ZUPT), but also applies map information to further correct the acceleration double integration drift and thus improve estimation accuracy. In the proposed method, a simple stance phase detector is designed to identify the stance phase of a gait cycle based on gyroscope measurements. For the non-stance phase during a gait cycle, an acceleration control variable derived from ZUPT information is introduced in the process model, while vector map information is taken as binary pseudo-measurements to further enhance position estimation accuracy and reduce uncertainty of walking trajectories. A particle filter is then designed to fuse ZUPT information and binary pseudo-measurements together. The proposed human position estimation method has been evaluated with closed-loop walking experiments in indoor and outdoor environments. Results of comparison study have illustrated the effectiveness of the proposed method for application scenarios with useful map information.
机译:基于可穿戴的惯性/磁传感器的人体运动分析在许多生物医学应用中发挥着重要作用,例如物理治疗,步态分析和康复。下半身生物运动分析的主要挑战之一是如何在行走过程中可靠地提供人体的位置估计。在本文中,我们提出了一种使用基于脚的惯性和磁传感器模块的基于粒子滤波的人体位置估计方法,该方法不仅使用传统的零速度更新(ZUPT),而且还应用地图信息来进一步校正加速度双积分漂移,从而提高估计精度。在提出的方法中,设计了一个简单的姿态相位检测器,以基于陀螺仪的测量值来识别步态周期的姿态相位。对于步态周期中的非姿态阶段,将基于ZUPT信息的加速度控制变量引入到过程模型中,同时将矢量地图信息用作二进制伪测量,以进一步提高位置估计的准确性并减少行走轨迹的不确定性。然后设计一个粒子过滤器,将ZUPT信息和二进制伪测量融合在一起。在室内和室外环境中,通过闭环步行实验对拟议的人体位置估计方法进行了评估。比较研究的结果说明了该方法在具有有用地图信息的应用场景中的有效性。

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