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Inertial Pocket Navigation System: Unaided 3D Positioning

机译:惯性袖珍导航系统:无辅助3D定位

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摘要

Inertial navigation systems use dead-reckoning to estimate the pedestrian's position. There are two types of pedestrian dead-reckoning, the strapdown algorithm and the step-and-heading approach. Unlike the strapdown algorithm, which consists of the double integration of the three orthogonal accelerometer readings, the step-and-heading approach lacks the vertical displacement estimation. We propose the first step-and-heading approach based on unaided inertial data solving 3D positioning. We present a step detector for steps up and down and a novel vertical displacement estimator. Our navigation system uses the sensor introduced in the front pocket of the trousers, a likely location of a smartphone. The proposed algorithms are based on the opening angle of the leg or pitch angle. We analyzed our step detector and compared it with the state-of-the-art, as well as our already proposed step length estimator. Lastly, we assessed our vertical displacement estimator in a real-world scenario. We found that our algorithms outperform the literature step and heading algorithms and solve 3D positioning using unaided inertial data. Additionally, we found that with the pitch angle, five activities are distinguishable: standing, sitting, walking, walking up stairs and walking down stairs. This information complements the pedestrian location and is of interest for applications, such as elderly care.
机译:惯性导航系统使用死区推算来估计行人的位置。行人沉船有两种类型,即捷联算法和步进前进法。与捷联算法不同,捷联算法由三个正交加速度计读数的双重积分组成,而步法则缺乏垂直位移估计。我们提出了第一种基于独立的惯性数据求解3D定位的步进方法。我们提出了一种用于上下运动的步幅检测器和一种新颖的垂直位移估算器。我们的导航系统使用引入裤子前袋的传感器,这可能是智能手机的位置。所提出的算法基于腿的张开角或俯仰角。我们分析了步长检测器,并将其与最新技术以及已经提出的步长估计器进行了比较。最后,我们在实际场景中评估了垂直位移估算器。我们发现我们的算法优于文献的步进和航向算法,并使用独立的惯性数据解决了3D定位问题。此外,我们发现在俯仰角的作用下,可以区分出五种活动:站立,坐着,走路,上楼梯和下楼梯。该信息补充了行人的位置,并且对于诸如老人护理之类的应用很感兴趣。

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