Historically, aeronautical engineering specifies demanding requirements in terms of precision, inspection and calibration during the assembly and construction of aircrafts. These requirements together with the present needs for more efficient and automated processes make it necessary to explore new concepts of intelligent tools capable of feeling and acting, integrated within the Industry 4.0. Based on these assumptions, this study aims for the development of monitoring strategies based on infrared radiation and high precision fibre optical sensors to monitor critical parameters of the structures to be used as input to control models of adaptronic systems.
BOOLE-DEUSTO is a software program intended for the analysis and design of simple digital electronic circuits. BOOLE-DEUSTO has been developed as an aid for undergraduate students and teachers, not for professional electronics designers. This paper presents BOOLE-DEUSTO's main characteristics, its intended field of use, and our teaching experience with it.
Experimental activities with real components are an essential part of all courses including or devoted to electrical and electronic circuits theory and practice. The knowledge triangle composed of hand-written exercises, simulations and traditional lab experiments has been enriched with the possibility for students to conduct real experiments over the Internet, using remote labs. This tutorial is devoted to one such remote lab named Virtual Instrument Systems in Reality (VISIR). The Global Online Laboratory Consortium (GOLC) elected VISIR as the best remote controlled laboratory in the world, at the first time this distinction was awarded. At the end of this tutorial, attendees are expected to know what is VISIR, what can (not) be done with it, who is currently using it, and how can one integrate it in a given course curriculum.
The VISIR Open Lab Platform designed at the Department of Electrical Engineering (AET), the Blekinge Institute of Technology (BTH), Sweden, is a platform for opening instructional laboratories for remote access 24/7 with preserved context. VISIR is an acronym for Virtual Instrument Systems in Reality. In VISIR laboratories, students perform physical experiments and laboratory work remotely. A unique interface gives them the feeling of “being there.” The platform software is published under a GPL license, and other universities, schools, et cetera, are invited use it to open their laboratories and to participate in further research and development. Apart from BTH, five universities in Europe have set up VISIR online laboratories for electrical experiments and the Indian Institute of Technology Madras in India will set up one soon. A VISIR community has been established. Common projects are initiated, and the sharing of learning material is being discussed. This chapter is a general introduction to VISIR and its possibilities.
Within the 3rd International Digital Citizenship Conference celebrated in San Sebastian-Spain in May 8th, we took part in a round table debate about the use of Smartphone in education with teenagers. There is an open discussion about the benefits or threats of using such an innovative technology. Usually the main trend is to forbid the use of mobile phones in the classroom. We bet for considering the use of any technology if it can benefit somehow our learning/teaching process. Smartphones are very powerful devices that can be used in many innovative ways. We can profit their availability, since many students have one. In this paper we analyze how different authors understand mobile learning, we review previous experiences and their results in educational institutions using mobile learning, and we reflect on the threats and opportunities of using mobile devices in education. Finally we show an approach to a new educational paradigm that is being implemented thanks to the educational revolution derived from the use of mobile devices and we provide simple guidelines for its implementation.
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