DocumentCode
3563171
Title
A cloud enabled virtual reality based pedagogical ecosystem for wind energy education
Author
Abichandani, Pramod ; Fligor, William ; Fromm, Eli
Author_Institution
Electr. & Comput. Eng. Dept., Drexel Univ., Drexel, PA, USA
fYear
2014
Firstpage
1
Lastpage
7
Abstract
This paper describes a scalable and transferable cloud-based virtual reality pedagogical ecosystem that provides students with the basics of wind turbines and associated wind farm design. The module uses mathematical models derived from the experimental WKA-60 turbine to incorporate realistic wind-turbine behavior. Students are able to design a virtual wind-farm for optimal energy generation by modifying individual wind turbine parameters such as the blade length, count, and angle as well as the spacing of the wind turbines in the wind farm. Live graphs showing how the design parameters affect total power output from the virtual wind farm provide instant feedback to the students. An adaptive methodology that assesses the application of students´ independent thought processes, along with design and operational skills in creating the wind farms is implemented. We provide a detailed description of technical approach that was adopted to create this system. The ecosystem uses the Amazon Web Services (AWS) cloud technology in the backend and Unity 3D gaming engine for the front-end rendering. The server-side software runs on Node.js and frameworks such as Express. As educational VR systems continue to develop, we anticipate that cloud based implementations will be utilized for an increasing number of educational needs and that the ecosystem and technical approach presented in this paper may serve as a guide for future educational VR research.
Keywords
Web services; cloud computing; computer aided instruction; electrical engineering computing; electrical engineering education; rendering (computer graphics); virtual reality; wind turbines; AWS cloud technology; Amazon Web services; WKA-60 turbine; blade length; cloud-based virtual reality; educational VR system; front-end rendering; optimal energy generation; pedagogical ecosystem; wind energy education; wind farm design; wind turbine; Blades; Ecosystems; Rotors; Virtual reality; Wind farms; Wind power generation; Wind turbines; Cloud Technology; Virtual Reality; Wind Energy Education;
fLanguage
English
Publisher
ieee
Conference_Titel
Frontiers in Education Conference (FIE), 2014 IEEE
Type
conf
DOI
10.1109/FIE.2014.7044192
Filename
7044192
Link To Document