Title :
Remote triggered photovoltaic solar cell lab: Effective implementation strategies for Virtual Labs
Author :
Freeman, Joshua ; Nagarajan, Akshay ; Parangan, Mithula ; Kumar, Dhanush ; Diwakar, Shyam ; Achuthan, Krishnashree
Author_Institution :
Amrita Vishwa Vidyapeetham Univ., Amritapuri, India
Abstract :
Remote triggered laboratories are an excellent way to provide access to costly labs and equipment for students in areas without such facilities. A novel remote triggered photovoltaic solar cell experiment is presented here. This experiment enables the student to learn in a hands-on, practical way about the fundamental characteristics of photovoltaic solar cells. The experiment has a web interface in which the student can turn a number of light bulbs on and off, adjust the load voltage of the solar cell, and view the experiment in real-time via a web-cam. In addition, the characteristics of the solar cells under these various conditions are measured and displayed on the web interface in a spreadsheet and are plotted in a novel and learning-effective manner. This experiment has been hosted on our Virtual Labs website for over a year, with a large number of students using the site. This paper presents implementation strategies and methods used which have proven effective for Virtual Labs, along with a technical description of the experiment and the system used to create and host the experiment.
Keywords :
laboratories; laboratory techniques; solar cells; hands-on; implementation strategies; photovoltaic solar cell; remote triggered laboratories; virtual labs; web interface; Data acquisition; Lighting; Photovoltaic cells; Photovoltaic systems; Software; Voltage measurement; Remote trigger; distance education; e-learning; laboratory setup; photovoltaic solar cell;
Conference_Titel :
Technology Enhanced Education (ICTEE), 2012 IEEE International Conference on
Conference_Location :
Kerala
Print_ISBN :
978-1-4577-0725-4
DOI :
10.1109/ICTEE.2012.6208653