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基于多传感器融合的行人导航系统自适应零速检测算法。

An Adaptive Zero Velocity Detection Algorithm Based on Multi-Sensor Fusion for a Pedestrian Navigation System.

机构信息

School of Electronic Science, National University of Defense Technology, Changsha 410073, China.

出版信息

Sensors (Basel). 2018 Sep 28;18(10):3261. doi: 10.3390/s18103261.

Abstract

The zero velocity update (ZUPT) algorithm is an effective way to suppress the error growth for a foot-mounted pedestrian navigation system. To make ZUPT work properly, it is necessary to detect zero velocity intervals correctly. Existing zero velocity detection methods cannot provide good performance at high gait speeds or stair climbing. An adaptive zero velocity detection approach based on multi-sensor fusion is proposed in this paper. The measurements of an accelerometer, gyroscope and pressure sensor were employed to construct a zero-velocity detector. Then, the adaptive threshold was proposed to improve the accuracy of the detector under various motion modes. In addition, to eliminate the height drift, a stairs recognition method was developed to distinguish staircase movement from level walking. Detection performance was examined with experimental data collected at varying motion modes in real scenarios. The experimental results indicate that the proposed method can correctly detect zero velocity intervals under various motion modes.

摘要

零速度更新(ZUPT)算法是抑制足部安装的行人导航系统误差增长的有效方法。为了使 ZUPT 正常工作,需要正确检测零速度间隔。现有的零速度检测方法在高步态速度或爬楼梯时不能提供良好的性能。本文提出了一种基于多传感器融合的自适应零速度检测方法。该方法利用加速度计、陀螺仪和压力传感器的测量值构建零速度检测器。然后,提出自适应阈值来提高在各种运动模式下检测器的准确性。此外,为了消除高度漂移,开发了一种楼梯识别方法来区分楼梯运动和平地行走。通过在实际场景中不同运动模式下收集的实验数据来检验检测性能。实验结果表明,该方法可以在各种运动模式下正确检测零速度间隔。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bb5/6210023/6dec5f9c7e67/sensors-18-03261-g001.jpg

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