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Improving the Accuracy of Direct Geo-referencing of Smartphone-Based Mobile Mapping Systems Using Relative Orientation and Scene Geometric Constraints

机译:使用相对方向和场景几何约束提高基于智能手机的移动制图系统直接地理参考的精度

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摘要

This paper introduces a new method which facilitate the use of smartphones as a handheld low-cost mobile mapping system (MMS). Smartphones are becoming more sophisticated and smarter and are quickly closing the gap between computers and portable tablet devices. The current generation of smartphones are equipped with low-cost GPS receivers, high-resolution digital cameras, and micro-electro mechanical systems (MEMS)-based navigation sensors (e.g., accelerometers, gyroscopes, magnetic compasses, and barometers). These sensors are in fact the essential components for a MMS. However, smartphone navigation sensors suffer from the poor accuracy of global navigation satellite System (GNSS), accumulated drift, and high signal noise. These issues affect the accuracy of the initial Exterior Orientation Parameters (EOPs) that are inputted into the bundle adjustment algorithm, which then produces inaccurate 3D mapping solutions. This paper proposes new methodologies for increasing the accuracy of direct geo-referencing of smartphones using relative orientation and smartphone motion sensor measurements as well as integrating geometric scene constraints into free network bundle adjustment. The new methodologies incorporate fusing the relative orientations of the captured images and their corresponding motion sensor measurements to improve the initial EOPs. Then, the geometric features (e.g., horizontal and vertical linear lines) visible in each image are extracted and used as constraints in the bundle adjustment procedure which correct the relative position and orientation of the 3D mapping solution.
机译:本文介绍了一种新方法,该方法有助于将智能手机用作手持式低成本移动地图系统(MMS)。智能手机正变得越来越复杂和智能,并迅速缩小了计算机和便携式平板设备之间的差距。当前一代的智能手机配备了低成本GPS接收器,高分辨率数码相机以及基于微机电系统(MEMS)的导航传感器(例如,加速度计,陀螺仪,磁罗经和气压计)。这些传感器实际上是MMS的基本组件。但是,智能手机导航传感器会遭受全球导航卫星系统(GNSS)精度低,累积漂移和信号噪声高的困扰。这些问题影响输入到束调整算法中的初始外部方向参数(EOP)的准确性,然后产生不准确的3D映射解决方案。本文提出了一种新方法,可通过使用相对方向和智能手机运动传感器测量以及将几何场景约束集成到免费网络捆绑调整中来提高智能手机直接地理参考的准确性。新方法将融合捕获图像的相对方向及其相应的运动传感器测量值,以改善初始EOP。然后,提取每个图像中可见的几何特征(例如,水平和垂直线性线),并将其用作束调整过程中的约束,该束调整过程校正了3D映射解决方案的相对位置和方向。

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