Abstract:
Augmented Reality (AR) virtual labs have come forward as a solution to one of the long-prevalent problem of dangerous lab conditions, cost etc. However, marker-based AR v...Show MoreMetadata
Abstract:
Augmented Reality (AR) virtual labs have come forward as a solution to one of the long-prevalent problem of dangerous lab conditions, cost etc. However, marker-based AR virtual labs offer limited freedom to users. In this work-in-progress paper, a markerless AR virtual lab is presented. The armature resistance of a DC motor is determined using the markerless AR virtual lab. An application is developed using Unity2018 and ARCore software development kit. Realizing the impact of a stable and flexible AR virtual lab on the present education system, a more relevant markerless AR Virtual lab is introduced in this paper.
Published in: 2018 IEEE International Conference on Teaching, Assessment, and Learning for Engineering (TALE)
Date of Conference: 04-07 December 2018
Date Added to IEEE Xplore: 17 January 2019
ISBN Information: