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Explore hidden information for indoor floor plan construction

机译:探索用于室内平面图构建的隐藏信息

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The lack of digital floor plans in most buildings has become a huge obstacle to pervasive indoor location based services (LBS). Recently there has been quite some research that leverages various sensing data such as inertial, WiFi and images from ubiquitous mobile devices (e.g., smartphones) to construct floor plans at large scale and low costs. Although great efforts are made to improve the accuracy and robustness against sensing data errors and noises, the quality of reconstructed maps is still limited. In this paper, we explore the hidden geometric structure information of indoor environments, such as collinearity of doors along hallways, right-angle corners, and polygon/circular shapes of rooms to optimize floor plans. Such prior knowledge about building structures provide new spatial relationships among floor plan elements. Thus we can further improve the quality of reconstructed maps. Real experiments in two large buildings show that 90-percentile landmark location errors are reduced by more than 50% to within 1m, and most orientation errors are corrected. The overall shape of the map has become much closer to the ground truth as well.
机译:大多数建筑物中缺乏数字楼层计划已成为基于普遍的室内位置的巨大障碍(LBS)。最近,已经有一些研究可以利用各种传感数据,例如来自普遍存器的移动设备(例如智能手机)的惯性,WiFi和图像(例如,智能手机)以构建大规模和低成本的地板计划。虽然提高了对传感数据错误和噪声的准确性和鲁棒性的努力,但重建地图的质量仍然有限。在本文中,我们探讨了室内环境的隐藏几何结构信息,例如沿着走廊,直角角和多边形/圆形房间的门的共同性,以优化地板计划。关于建筑结构的现有知识提供了楼层结构元件之间的新空间关系。因此,我们可以进一步提高重建地图的质量。两个大型建筑中的真实实验表明,90百分位的地标位置误差减小超过50±1米,并且大多数方向误差都被纠正。地图的整体形状也变得更接近地面真理。

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