Publicado

2017-10-01

Ubiquitous learning model based on platforms of multi-screen TV (uLMTV)

Modelo de aprendizaje ubicuo basado en plataformas de televisión multipantalla (uLMTV)

DOI:

https://doi.org/10.15446/dyna.v84n203.64160

Palabras clave:

u-learning, ubiquitous computing, cloud computing, multi-screen TV, TV/video platforms everywhere (en)
aprendizaje ubicuo, computación ubicua, computación en la nube, TV multipantalla, plataformas TV/video en todas partes (es)

Autores/as

Although ICTs have strengthened educational processes, there are still some challenges on flexibility and convergence, among others. In this article, we propose a ubiquitous learning model (u-learning) that can have a positive impact on the teaching/ learning process since it considers video as an important element which can be displayed on any screen at any time and place. Besides indicating the elements making part of the model, alternatives of implementation, uses of video and experimentation with a cloud supported video platform are shown here. The results demonstrate an optimal deployment of the video at different devices when using a multi-screen video platform connected to the Internet, and show this model as a good reference to projects an u-learning service.
Las TIC han potencializado los procesos educativos, pero aún hay desafíos de flexibilidad, convergencia, entre otros. Este artículo propone un modelo de aprendizaje ubicuo (u-learning) que puede impactar positivamente al proceso de enseñanza/aprendizaje, ya que contempla el video como un elemento importante, que se puede desplegar en cualquier pantalla, en cualquier momento y lugar. Además de indicar los elementos que intervienen en el modelo, se presentan alternativas de implementación, usos del video, y una experimentación con una plataforma de video basada en la nube. Los resultados demuestran un despliegue óptimo del video en diferentes dispositivos cuando se utiliza una plataforma de video multi-pantalla conectada a Internet, y muestran este modelo como una buena referencia para proyectar un servicio de u-learning.

Referencias

UNESCO. Las TIC en la educación [online], [reviewed: April 17th, of 2014]. Available at: http://www.unesco.org/new/es/unesco/ themes/icts/

The World Bank. Education for all (EFA) [online], [reviewed: April 17th, of 2014]. Available at: http://go.worldbank.org/I41DLBA8C0

Aktaruzzaman, M., Shamim, M., Huq, R. and Clement, C.K., Trends and issues to integrate ICT in teaching learning for the future world of education. Int. J. Eng. Technol. IJET-IJENS. [online]. 11(3), 2011. [reviewed: april 17th, of 2014]. Available at: http://www.ijens.org/

Päivi-Aarreniemi, J., T-learning for model learning via digital TV, Proceedings of 16 th Conference European Association for Education in Electrical and Information Engineering (EAEEIE 05), 2005. pp.1-6.

Wang, F. and Zhou, Ch., A theoretical study on development of information and communication technology (ICT)-Supported education systems, Proceedings of 10th International Conference on Fuzzy Systems and Knowledge Discovery (FSKD), 2013. pp. 1080-1084. DOI: 10.1109/FSKD.2013.6816357

Cobo, C. and Moravec, J.W., Aprendizaje invisible: Hacia una nueva ecología de la educación [online], 2011, [reviewed: Sept. 21th of 2016]. Available at: http://conservancy.umn.edu/handle/11299/144375

UNESCO. Global education monitoring report [Online], France, 2016, [reviewed: Sept. 21th of 2016]. Available at: http://es.unesco.org/gem-report/

Infodev/World Bank. ICT and education - Key issues [Online], [reviewed: April 17th, of 2014]. Available from: http://www.worldbank.org/

Diaz, J. and Rusu, C., Ubiquitous computer-supported collaborative learning: A literature review, Proceedings of Information Technology: New Generations (ITNG), 2014 11th International Conference on, 2014, pp. 593-598. DOI: 10.1109/ITNG.2014.48

Weiser, M., The computer for the 21st century. Scientific American, 265(3), pp.94-104, 1991. DOI: 10.1038/scientificamerican0991-94

Aihua, Z., Study of ubiquitous learning environment based on Ubiquitous computing, Proceedings of Ubi-media Computing (U-Media), 2010 3rd IEEE International Conference on. 2010, pp. 136-138. DOI: 10.1109/UMEDIA.2010.5544482

Stefan, L., Gheorghiu, D., Moldoveanu, F. and Moldoveanu, A., Ubiquitous Learning Solutions For Remote Communities - A case study for K-12 classes in a Romanian Village, Proceedings of Control Systems and Computer Science (CSCS), 2013 19th International Conference on, pp. 569-574. DOI: 10.1109/CSCS.2013.22

Zhou, W., Cui, B., Wang, B., Shi, Q. and Yokoi, S., An exploration of ubiquitous learning in computer fundamental learning scenario. Proceedings of The 7th International Conference on Computer Science & Education (ICCSE 2012), Melbourne, Australia, 2012, pp. 1420-1424. DOI: 10.1109/ICCSE.2012.6295330

López, G.A., Jiménez, J.A. and Puche, W.S., Ubiquitous personal learning environment model (uPLEMO), Proceedings of 2016 Technologies Applied to Electronics Teaching (TAEE), 2016, pp. 1-8. DOI: 10.1109/TAEE.2016.7528383

Chiu, P-S., Kuo, Y-H., Huang, Y-M. and Chen, T-S., A meaningful learning based u-Learning evaluation model, Proceedings of Eighth

IEEE International Conference on Advanced Learning Technologies, 2008, pp. 77-81. DOI: 10.1109/ICALT.2008.100

Yahya, S., Arniza, A.E. and Abd-Jalil, K., The definition and characteristics of ubiquitous learning: A discussion. International Journal of Education and Development using Information and Communication Technology (IJEDICT) [online]. 6(1), pp. 117-127, 2010. [reviewed: Oct 15th of 2014]. Available at: http://ijedict.dec.uwi.edu//viewarticle.php?id=785

Restrepo, C.M.Z., Lalinde, J.G., Polido, O.A., Mejía, C.V., Núñez, R.A., Three dimensions as basic references for the construction of ubiquity learning environments in a university context, Proceedings of the 4th International Conference on Computer Supported Education, 2016. pp. 427-431. DOI: 10.5220/0003923904270431

Castro, S.M., Clarenc, C.A., López-de Lenz, C., Moreno, M.E. y Tosco, N.B., Analizamos 19 plataformas de e-learning [online], 2013, 154 P. [reviewed Sept. 26th of 2014]. Available at: www.congresoelearning.org

Aarreniemi-Jokipelto, P., Modelling and content production of distance learning concept for interactive digital television, PhD Dissertation, Department of Computer Science and Engineering, Helsinki University of Technology, Espoo, Finland, 2006.

Caytiles, R.D., Jeon, S-H. and Kim, T., U-Learning Community: An interactive social learning model based on wireless sensor networks, Proceedings of 2011 International Conference on Computational Intelligence and Communication Systems. pp. 745-749. DOI: 10.1109/CICN.2011.165

Sung, J-S., U-learning model design based on ubiquitous environment. International Journal of Advanced Science and Technology. [online]. 13, pp.77-88, 2009. [cited May 18th of 2014]. Available at: http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.178.3054&rep=rep1&type=pdf

Hijazi, H.W. and Itmazi, J.A., Crawler Based Context Aware Model for Distributed e-Courses through Ubiquitous Computing at Higher Education Institutes. Proceedings of e-Learning “Best Practices in Management, Design and Development of e-Courses: Standards of Excellence and Creativity”, 2013 Fourth International Conference on. pp. 9-14. https://doi.org/10.1109/ECONF.2013.28

Rabello, S., Oliveira, J., Wagner, A., Barbosa, J. and Barbosa, D.. CoolEdu-A collaborative multiagent model for decentralized ubiquitous education environments, IEEE Latin America Transactions, 10(6), pp. 2273-2279, 2012. DOI: 10.1109/TLA.2012.6418132

Wagner, A., Barbosa, J.L.V. and Barbosa, D.N.F., A model for profile management applied to ubiquitous learning environments, Expert Systems with Applications, 41(4), pp. 2023-2034, 2014. DOI: 10.1016/j.eswa.2013.08.098

Joo, K.H. and Park, N.H., Design and application of the u-SM teaching and learning model for an efficient ubiquitous learning. Proceedings of Computing, Management and Telecommunications (ComManTel), 2013 International Conference on. pp. 264-268. DOI: 10.1109/ComManTel.2013.6482402

Inthachot, M., Sopeerak, S. and Rapai, N., The development of a U-learning instructional model using project based learning approach to enhance students’ creating-innovation skills, Procedia - Social and Behavioral Sciences, 103, pp. 1011-1015, 2013. DOI: 10.1016/j.sbspro.2013.10.426

Noam, E., Cloud TV: Toward the next generation of network policy debates, Telecommunications Policy, 38(8-9), pp. 684-692, 2014. DOI: 10.1016/j.telpol.2013.10.004

Waterman, D., Sherman, R. andWook-Ji, S., The economics of online television: Industry development, aggregation, and “TV Everywhere.”, Telecommunications Policy, 37(9), pp. 725-736, 2013. DOI: 10.1016/j.telpol.2013.07.005

Sanz, E. and Crosbie, T., The meaning of difgital platforms: Open and closed television infrastructure, Poetics, 55, pp. 76-89, 2016. DOI: 10.1016/j.poetic.2015.11.002

Doyle, G., Resistance of channels: Television distribution in the multiplatform era, Telematics and Informatics, 33(2), pp. 693-702, 2016. DOI: 10.1016/j.tele.2015.06.015

ETSI. Hybrid broadcast broadband TV. ETSI TS 102 796 V1.1.1 [online], Technical Specification, France, 2010 [reviewed May 15th 2015]. Available at: http://www.etsi.org/deliver/etsi_ts/102700_ 102799/102796/01.01.01_60/ts_102796v010101p.pdf

DATE, Consulting. advanced TV services for all, available now with hybrid broadcast broadband TV solutions, 2013 [reviewed Sept. 19th of 2016]. Available at: http://www.eutelsat.com/files/contributed/ news/media_library/brochures/Hybrid-TV-White-Paper-iDate-Eutelsat-Orange.pdf

Lin, T.T.C. and Oranop, C., Responding to media convergence: Regulating multi-screen television services in Thailand, Telematics and Informatics, 33(2), pp. 722-732, 2016. DOI: 10.1016/j.tele.2015.07.005

Cisco. The zettabyte era—trends and analysis [online]. Cisco - White Papers, 2015 [reviewed March 31th of 2016]. Available at: http://www.cisco.com/

Hooper, M., Moyler, A. and Nicoll, R., Over The Top TV (OTT TV) delivery platforms review [online], 2010 [reviewed May 29th of 2014]. Available at: http://www.bci.eu.com/over-the-top-tv/ott-tv-white-paper/

Kim, J., Kim, S. and Nam, C.m Competitive dynamics in the Korean video platform market: Traditional pay TV platforms vs. OTT platforms, Telematics and Informatics, 33(2), pp. 711-721, 2016. DOI: 10.1016/j.tele.2015.06.014

Mell, P. and Grance, T., The NIST definition of cloud computing. recommendations of the National Institute of Standards and Technology [online], 2011 [reviewed Sep 15th of 2016]. Available at: http://nvlpubs.nist.gov/nistpubs/Legacy/SP/nistspecialpublication800-145.pdf

Singh, S., Jeong, Y-S. and Park, J.H., A survey on cloud computing security: Issues, threats, and solutions, Journal of Network and Computer Applications, 75, pp. 200-222, 2016. DOI: 10.1016/j.jnca.2016.09.002

Elemental Technologies. CDNs DEMYSTIFIED. A streaming technology primer [Online], 2012 [reviewed Sep 15th of 2016]. Available at: http://www.elemental.com/

Hours, H., Biersack, E., Loiseau, P., Finamore, A. and Mellia, M., A study of the impact of DNS resolvers on CDN performance using a causal approach, Computer Networks, 109(2), pp. 200-210, 2016. DOI: 10.1016/j.comnet.2016.06.023

Tan, T.K., Weerakkody, R., Mrak, M., Ramzan, N., Baroncini, V., Ohm, J-R. et al., Video quality evaluation methodology and verification testing of HEVC Compression Performance, IEEE Transactions on Circuits and Systems for Video Technology, 26(1), pp. 76-90, 2016. DOI: 10.1109/TCSVT.2015.2477916

Stankowski, J., Grajek, T., Wegner, K. and Domanski, M., Video quality in multiple HEVC encoding-decoding cycles. Proceedings of Systems, Signals and Image Processing (IWSSIP), 2013 20th International Conference on, 2013. pp. 75-78. DOI: 10.1109/IWSSIP.2013.6623453

De Praeter, J., Van Wallendael, G., Vermeir, T., Slowack, J. and Lambert, P., Spatially misaligned HEVC transcoding with computational-complexity scalability, Journal of Visual Communication and Image Representation, 40(Part A), pp.149-158, 2016. DOI: 10.1016/j.jvcir.2016.06.025

Hwang, K-W., Gopalakrishnan, V., Jana, R., Lee, S., Misra, V., Ramakrishnan, K.K. et al., Joint-family: Adaptive bitrate video-on-demand streaming over peer-to-peer networks with realistic abandonment patterns, Computer Networks, 106, pp. 226-244, 2016. DOI: 10.1016/j.comnet.2016.06.006

Gibelli, T., La investigación basada en diseño para el estudio de una innovación en educación superior que promueve la autorregulación del aprendizaje utilizando TIC, Argentina, [online]. 2014- [reviewed Dec. 12th of 2015]. Available at: www.oei.es/historico/ congreso2014/memoriactei/1440.pdf.

Allen Interactions Inc., Agile eLearning development with SAM [online], [reviewed Dec. 13th of 2015]. Available at: http://www.alleninteractions.com/sam-process

Moreno-López, G.A., Builes-Jimenez, J.A. and Bernal-Villamil, S.C., Overview of u-learning. Concepts, characteristics, uses, application scenarios and topics for research, IEEE Latin America Transactions, 14(12), pp. 4792-4798, 2016. DOI: 10.1109/TLA.2016.7817013.

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[1]
“Modelo de aprendizaje ubicuo basado en plataformas de televisión multipantalla (uLMTV)”, DYNA, vol. 84, no. 203, pp. 160–169, Oct. 2017, doi: 10.15446/dyna.v84n203.64160.