
Research Article
Remote Consultation Information Mobile Phone Intelligent Display System Under Augmented Reality and Human-Computer Interaction
@INPROCEEDINGS{10.1007/978-3-030-82565-2_28, author={Ying Bao}, title={Remote Consultation Information Mobile Phone Intelligent Display System Under Augmented Reality and Human-Computer Interaction}, proceedings={Multimedia Technology and Enhanced Learning. Third EAI International Conference, ICMTEL 2021, Virtual Event, April 8--9, 2021, Proceedings, Part II}, proceedings_a={ICMTEL PART 2}, year={2021}, month={7}, keywords={GPRS technology Augmented reality Display drive Human-computer interaction Consultation information Mobile phone display}, doi={10.1007/978-3-030-82565-2_28} }
- Ying Bao
Year: 2021
Remote Consultation Information Mobile Phone Intelligent Display System Under Augmented Reality and Human-Computer Interaction
ICMTEL PART 2
Springer
DOI: 10.1007/978-3-030-82565-2_28
Abstract
The current mobile phone intelligent display system lacks the matching operation of display mode before the display driving operation, which leads to the large average variance of display results. Therefore, this research designs a new intelligent display system of remote consultation information based on augmented reality and human-computer interaction technology. The research and design is mainly for software design. Firstly, two-dimensional display matching algorithm is applied to complete the matching operation of display mode. At the same time, Linux is used as the system framework to be compatible with different modules. In the system, augmented reality and UI human-computer interaction module are established to increase the system functions. GPRS technology is used as the carrier in remote transmission. Finally, a new display driven algorithm is designed. In order to verify the feasibility of the intelligent display system on mobile phone, a comparative experiment was designed to display the remote consultation information, and the power consumption and mean square deviation of different systems were analyzed. The experimental results show that the power consumption and mean square deviation of the system are low, which fully proves the feasibility of the system.