Visualization and control system for wireless network using augmented reality technology

Author(s):  
Hideki Shimada ◽  
Naoya Sakamoto ◽  
Ryota Ayaki ◽  
Kenya Sato
Author(s):  
Guona Lv ◽  
Baoren Wang ◽  
Yan Guo ◽  
Tide Zhang ◽  
Junpeng Pan

Author(s):  
Oleh Nikonov

The use of artificial intelligence is a modern important trend in the creation of promising information and control systems of vehicles, including special purpose. The high demands on augmented reality software simply cannot rely solely on human programming to display virtual objects against the real world. Neural networks and machine learning can perform these tasks with much greater efficiency and can greatly improve the augmented reality experience. Goal. The purpose of the article is to develop the concept of convergence of augmented reality and artificial intelligence technologies for special purpose vehicles. Methodology. Artificial intelligence technologies contribute to the transformation of the economy, labor market, government institutions and society as a whole. The use of artificial intelligence technologies helps to reduce costs, increase production efficiency, quality of goods and services. Augmented reality technology offers more innovative methods of visualization by expanding the boundaries of reality, controlling the perspective of the object and visualization in a real context. Results. The concept of convergence of augmented reality and artificial intelligence technologies for special purpose vehicles based on a synergetic approach has been developed. An integrated intelligent information and control system for special purpose vehicles with augmented reality technology has been developed. Originality. Using the convergence of augmented reality and artificial intelligence technologies for special purpose vehicles. Practical value. Convergence is the foundation for achieving numerous positive social and economic effects. The use of augmented reality technology and artificial intelligence can significantly increase the efficiency of special purpose vehicles.


2014 ◽  
Vol 494-495 ◽  
pp. 1064-1067
Author(s):  
Ping Wang ◽  
Xin Gao ◽  
Rong Xin Fu ◽  
Si Yu Han ◽  
Xiao Jing Fang ◽  
...  

Aiming at the time delay of telecommunication problem and the real-time correction problem in path planning, this paper presents a telerobot system based on augmented reality technology and force feedback technology. The core is the dynamic integration of live streaming video of the remote scene and virtual robot, and applying the force feedback sensing and control technologies to solve robotic arms path planning problem. Experiment proves that the system can basically solve the delay problem and make up for the limitation of merely relying on virtual reality simulation technology.


Author(s):  
Au Thien Wan ◽  
Leong Yat San ◽  
Mohammad Saiful Omar

The purpose of this article was to evaluate the effectiveness of using mobile augmented reality (AR) instructional material for Year 10 science students in a secondary school in Brunei Darussalam. Specific learning styles were identified for the control and the experimental groups. A mobile AR application of instructional material was developed for year 10 chemistry lesson focusing on redox reaction using Vuforia SDK and Unity3d. The material developed consisted of visual, audio and kinesthetic elements of learning modalities which aimed to stimulate students' interest and improve their learning ability. The t-test (t = -3.39) in the posttest indicate d a significant result (p = 0.00152) between the mean scores of the experimental (mean = 42.72) and control (mean = 26.36) groups. The result showed that the intervention of classroom lessons introduced by the mobile AR application had a significant positive impact on the learning outcome and supported the idea that AR can be a valuable teaching tool. Qualitative analysis also indicated that it improved the liveliness of the learning environment and the interaction amongst the students.


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