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Development of a Web-Based Indoor Navigation System Using an Accelerometer and Gyroscope: A Case Study at The Faculty of Natural Sciences of Comenius University

机译:使用加速度计和陀螺仪开发基于Web的室内导航系统:以科门纽斯大学自然科学学院为例

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As a complex of buildings, the Faculty of Natural Sciences of the Comenius University in Bratislava tends to be difficult to navigate in spite of its size. An indoor navigation application could potentially save a lot of time and frustration. There are currently numerous technologies used in indoor navigation systems. Some of them focus on a high degree of precision and require significant financial investment; others provide only static information about a current location. In this paper we focused on the determination of an approximate location using inertial measurement systems available on most smartphones, i.e., a gyroscope and an accelerometer. The actual position of the device was calculated using “a walk detection method” based on a delayed lack of motion. We have developed an indoor navigation application that relies solely on open source JavaScript libraries to visualize the interior of the building and calculate the shortest path utilizing Dijsktra’s routing algorithm. The application logic is located on the client side, so the software is able to work offline. Our solution represents an accessible lowcost and platform-independent web application that can significantly improve navigation at the Faculty of Natural Sciences. Although our application has been developed on a specific building complex, it could be used in other interiors as well.
机译:作为建筑物的综合体,布拉迪斯拉发的夸美纽斯大学自然科学学院尽管规模庞大,却往往难以驾驭。室内导航应用程序可能会节省大量时间和精力。当前,室内导航系统中使用了许多技术。其中一些注重高度精确性,需要大量的财务投资;其他仅提供有关当前位置的静态信息。在本文中,我们专注于使用大多数智能手机上可用的惯性测量系统(即陀螺仪和加速度计)确定近似位置。基于延迟的运动不足,使用“步行检测方法”来计算设备的实际位置。我们开发了一种室内导航应用程序,该应用程序完全依赖于开源JavaScript库来可视化建筑物的内部,并利用Dijsktra的路由算法来计算最短路径。应用程序逻辑位于客户端,因此该软件可以脱机工作。我们的解决方案代表了可访问的低成本且独立于平台的Web应用程序,可以显着改善自然科学学院的导航。尽管我们的应用程序是针对特定建筑群开发的,但也可以用于其他室内设计。

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