INSAR:使用增强现实技术的室内导航系统

Ahmed Alnabhan, Brian M. Tomaszewski
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引用次数: 23

摘要

移动设备的室内导航应用程序越来越普遍,并且对于想要找到建筑物内部目的地的人来说是必要的。许多室内导航应用都采用了不同的技术,比如Wi-Fi指纹识别。这些应用程序大多使用固定的背景地图和预先计算的路径来引导用户到达目的地。这些系统的用户需要一般的地图阅读技能,并了解室内地图的具体工作原理。此外,这些类型的系统需要在导航开始前进行复杂而精确的计算,以确定路由路径,这可能会受到不稳定的Wi-Fi信号的影响。在本文中,我们建议使用增强现实的室内导航系统(INSAR),它在基于android的集成应用程序中利用Wi-Fi指纹识别、增强现实(AR)和数字罗盘技术。具体而言,我们使用Wi-Fi指纹识别方法确定用户位置,增强现实显示实时导航信息,指南针确定目的地方向。此外,数字罗盘用于读取每个参考点(RP)的目的地方向,有助于指导用户“在飞行中”,从而减少潜在的Wi-Fi信号不稳定影响。
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INSAR: indoor navigation system using augmented reality
Indoor navigation applications for mobile devices are being more common and needed for people who want to find inside building destinations. Many indoor navigation applications utilize different technologies, such as Wi-Fi fingerprinting, have been suggested. Most of these applications use a fixed background map and pre-calculated paths to lead the user to their destinations. Users of these systems need general map reading skills and understanding how specifically indoor maps work. In addition, these system types need to implement complex and accurate calculations to determine routing paths before navigation starts - which could be affected by unstable Wi-Fi signals. In this paper, we suggest INSAR or Indoor Navigation System Using Augmented Reality, which utilizes Wi-Fi fingerprinting, augmented reality (AR), and digital compass technologies in an integrated Android-based app. Specifically, we used a Wi-Fi fingerprinting method to determine user position, augmented reality to display real-time navigation information, and a compass to determine destination direction. Additionally, digital compass use to read the destination direction of each reference point (RP) helps direct the users "on the fly" thus reducing potential Wi-Fi signal instability effects.
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