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Design of a Mobile Augmented Reality-based Indoor Navigation System

Xin Hui Ng, Woan Ning Lim

20202020 4th International Symposium on Multidisciplinary Studies and Innovative Technologies (ISMSIT)42 citationsDOI

Abstract

GPS-based navigation technology has been widely used in most of the commercial navigation applications nowadays. However, its usage in indoor navigation is not as effective as when it is used at outdoor environment. Much research and developments of indoor navigation technology involve additional hardware installation which usually incur high setup cost. In this paper, research and comparisons were done to determine the appropriate techniques of indoor positioning, pathfinding, and route guidance for an indoor navigation method. The aim of this project is to present a simple and cost- effective indoor navigation system. The proposed system uses the existing built-in sensors embedded in most of the mobile devices to detect the user location, integrates with AR technology to provide user an immersive navigation experience. In this project, an indoor navigation mobile application was developed and tested. The development demonstrates the usage of IndoorAtlas which enables indoor positioning through technology fusion to detect user's position and obtain the route to destination, and ARCore to display AR guidance using the computed route. Surveys were carried out to gauge the efficiency of the method and to gather the feedback from the participants. The architecture of the method and the demonstration of the application is presented.

Topics & Concepts

Computer scienceGlobal Positioning SystemTurn-by-turn navigationNavigation systemMobile robot navigationAugmented realityReal-time computingMobile deviceIndoor positioning systemHybrid positioning systemSensor fusionLocation-based serviceEmbedded systemHuman–computer interactionPositioning systemMobile robotArtificial intelligenceAccelerometerEngineeringTelecommunicationsRobotRobot controlNode (physics)Operating systemStructural engineeringIndoor and Outdoor Localization TechnologiesRobotics and Sensor-Based LocalizationUnderwater Vehicles and Communication Systems
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