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Feasibility of employing AHRS algorithms in the real-time estimation of sensor orientation using low-cost and low sampling rate wearable sensors in IoT application

机译:在物联网应用中使用低成本和低采样率的可穿戴传感器在传感器方向的实时估计中采用AHRS算法的可行性

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In this paper, the feasibility of using wearable wireless low-cost motion trackers equipped with magnetic/inertial sensors in daily human activities was investigated. Five previously introduced attitude estimation algorithms were chosen and implemented in Windows IoT environment. A Texas Instrument CC2650STK wireless sensor was utilized to capture the raw magnetic/inertial data. The raw data was streamed to a DragonBoard 410c single board computer in real-time via Bluetooth low energy with the low sampling frequency. The sensor attitude was estimated using the attitude estimation algorithms continuously. A Shimmer 3 AHRS system was used as a golden standard, and the orientation of the Shimmer 3 was acquired using the Shimmer Consensys PRO 1.5 software. The experimental test showed poor agreement between the estimated and reference orientations and that the calculated orientation was dependent on an initial calibration. Based on the preliminary results and the current limitations in the wearable motion trackers, we may conclude that a precise estimation of a rigid body angle may not be achieved using wearable motion trackers in daily activities and other clinical applications.
机译:在本文中,研究了在日常人类活动中使用配备磁/惯性传感器的可穿戴无线低成本运动跟踪器的可行性。在Windows IoT环境中选择并实现了五个先前引入的姿态估计算法。德州仪器(TI)的CC2650STK无线传感器用于捕获原始磁/惯性数据。原始数据通过低采样率的蓝牙低功耗实时传输到DragonBoard 410c单板计算机。连续使用姿态估计算法估计传感器姿态。将Shimmer 3 AHRS系统用作黄金标准,并使用Shimmer Consensys PRO 1.5软件获取Shimmer 3的方向。实验测试表明,估计方向和参考方向之间的一致性差,并且计算出的方向取决于初始校准。根据初步结果和可穿戴运动追踪器的当前局限性,我们可以得出结论,在日常活动和其他临床应用中,使用可穿戴运动追踪器可能无法实现对刚体角度的精确估计。

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