3DOF tracking accuracy improvement for outdoor Augmented Reality

Joonsuk Park, Jun Park
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引用次数: 10

Abstract

Outdoor Augmented Reality (AR) gained popularity recently due to its potential for location based mobile services. However, most commercially available Global Positioning Systems (GPS), except for the expensive high-end models, do not provide accurate location information that is enough to be used for displaying practically meaningful location based information. In this paper, we present a computer vision based method for improving user's two dimensional location and one-dimensional orientation, the initial values of which are obtained from a GPS and a digital compass. Our method utilizes corner positions of buildings in the map and the vertical edges of the buildings in the captured images. We applied anisotropic diffusion in order to filter noise and preserve edges, and dual vertical edge filters on gray and saturation images. Our method is suitable for mobile services in urban environments where tall buildings degrade GPS signals. In average, our method improved 15.0 meters in position and 2.2 degrees in orientation.
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户外增强现实3DOF跟踪精度的提高
户外增强现实(AR)最近因其基于位置的移动服务的潜力而受到欢迎。然而,大多数商用全球定位系统(GPS),除了昂贵的高端型号,不能提供准确的位置信息,不足以显示实际有意义的基于位置的信息。本文提出了一种基于计算机视觉的改进用户二维定位和一维方位的方法,其初始值由GPS和数字罗盘获得。我们的方法利用地图中建筑物的角落位置和捕获图像中建筑物的垂直边缘。我们采用各向异性扩散来过滤噪声和保留边缘,并对灰度和饱和图像进行双垂直边缘滤波。我们的方法适用于城市环境下的移动业务,因为高楼大厦会降低GPS信号。我们的方法平均提高了15.0米的位置和2.2度的方向。
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