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Interactive AR App for Real-Time Analysis of Resistive Circuits

  • Alejandro Álvarez-Marín [1] ; J. Ángel Velázquez-Iturbide [2] ; Ricardo Campos-Villarroel [1]
    1. [1] Universidad de La Serena

      Universidad de La Serena

      La Serena, Chile

    2. [2] Universidad Rey Juan Carlos

      Universidad Rey Juan Carlos

      Madrid, España

  • Localización: Revista Iberoamericana de Tecnologías del Aprendizaje: IEEE-RITA, ISSN 1932-8540, Vol. 16, Nº. 2, 2021, págs. 187-193
  • Idioma: inglés
  • DOI: 10.1109/RITA.2021.3089917
  • Texto completo no disponible (Saber más ...)
  • Resumen
    • An augmented reality app for real-time analysis of direct current in resistive circuits is presented. The app allows the manipulation of circuit elements and computes the values of voltage and current intensity using the loop method and applying the Kirchhoff’s voltage law. The app can be used in theoretical classes and laboratories. The contributions of this paper are two-fold. First, the app has higher levels of interactivity than other apps in the same domain since it allows defining the configuration and the parameters of the circuit. Second, the app performs more complex computations than similar apps in real-time.

  • Referencias bibliográficas
    • M. Billinghurst and A. Duenser, “Augmented reality in the classroom,”Computer, vol. 45, no. 7, pp. 56–63, Jul. 2012, doi:10.1109/MC.2012.111.
    • R. T. Azuma, “A survey of augmented reality,” Presence TeleoperatorsVirtual Environ., vol. 6, no. 4, pp. 355–385, Aug. 1997, doi:10.1162/pres.1997.6.4.355.
    • S. Feiner, B. Macintyre, and D. Seligmann, “Knowledge-based augmentedreality,” Commun. ACM, vol. 36, no. 7, pp. 53–62, Jul. 1993,doi: 10.1145/159544.159587.
    • A. Dey, M. Billinghurst, R. W. Lindeman, and J. E. Swan, “A systematicreview of 10 years of augmented reality usability studies:2005 to 2014,”...
    • W. Matcha and D. Awang, “User preference in collaborative sciencelearning through the use of augmented reality,” Proc. Int. Congr. Eng.Educ.,...
    • F. J. Ayala Alvarez, E. B. Blázquez Parra, and F. D. P. Montes-Tubío,“Incorporation of 3D ICT elements into class,” Comput. Appl. Eng.Educ.,...
    • F. Dinis, A. Guimarães, B. Carvalho, and J. Martins, “Virtual and augmentedreality game-based applications to civil engineering education,”in...
    • C. Sahin et al., “Wireless communications engineering education viaaugmented reality,” in Proc. IEEE Frontiers Educ. Conf., Oct. 2016,pp....
    • M. P. Bergamaschi and I. F. Silveira, “Enhancing the understanding of3D objects for engineering students: A mixed methodology of AR applicationand...
    • M. Contero, J. M. Gomis, F. Naya, F. Albert, and J. Martin-Gutierrez,“Development of an augmented reality based remedial course to improvethe...
    • J. Cheng, Y. Wang, D. Tjondronegoro, and W. Song, “Construction ofinteractive teaching system for course of mechanical drawing based onmobile...
    • M. Akçayır, G. Akçayır, H. M. Pekta¸s, and M. A. Ocak, “Augmentedreality in science laboratories: The effects of augmented reality onuniversity...
    • J. Cubillo, S. Martin, M. Castro, and R. Meier, “Control of aremote laboratory by augmented reality,” in Proc. IEEE Int. Conf.Teaching, Assessment,...
    • A. M. Borrero and J. M. A. Márquez, “A pilot study of the effectivenessof augmented reality to enhance the use of remote labs in electrical...
    • N. Frid, D. Hofman, and V. Sruk, “Work in progress: Embeddedcomputer engineering learning platform capabilities,” in Proc.Global Eng. Educ....
    • T. Haramaki and H. Nishino, “An engineering education support systemusing projection-based AR,” in Proc. Int. Conf. Netw.-Based Inform.Syst.,...
    • J. Martín-Gutiérrez, P. Fabiani, W. Benesova, M. D. Meneses,and C. E. Mora, “Augmented reality to promote collaborative andautonomous learning...
    • M. Restivo, J. Rodrigues, and M. Chouzal, “Let’s work with AR in DCcircuits,” in Proc. Int. Conf. Interact. Collaborative Learn., Dec. 2014,pp....
    • I. Opri¸s, S. Costina¸s, C. S. Ionescu, and D. E. G. Nistoran,“Towards augmented reality in power engineering,” in Proc. 10th Int.Symp. Adv....
    • S. A. Shanab, S. Odeh, R. Hodrob, and M. Anabtawi, “Augmentedreality Internet labs versus hands-on and virtual labs: A comparativestudy,”...
    • A. Noorasura and S. Sazilah, “A model of mobile learning objectdesign for concept comprehension using reciprocal teaching strategiesand augmented...
    • M. Aqel, “The effect of different interaction levels on instructionaldesign learners,” Procedia Social Behav. Sci., vol. 103, pp. 1035–1043,Nov....
    • T. Floyd, Principles of Electric Circuits. London, U.K.: Pearson, 2007.
    • Unity. Accessed: Dec. 17, 2019. [Online]. Available: https://docs.unity3d.com/2018.3/Documentation/Manual/CollidersOverview.html
    • J. Camba, M. Contero, and G. Salvador-Herranz, “Desktop vs. mobile:A comparative study of augmented reality systems for engineeringvisualizations...
    • D. Fonseca, S. Villagrasa, F. Vails, E. Redondo, A. Climent, andL. Vicent, “Engineering teaching methods using hybrid technologiesbased on...
    • A. Alvarez, F. Javier, B. Parra, E. Beatriz, M. Tubio, and F. de Paula,“From 2D to 3D: Teaching terrain representation in engineeringstudies...
    • M. Fishbein and I. Ajzen, Belief, Attitude, Intention and Behavior:An Introduction to Theory and Research. Reading, MA, USA:Addison-Wesley,...
    • F. D. Davis, “User acceptance of information technology: Systemcharacteristics, user perceptions and behavioral impacts,” Int.J. Man-Mach....
    • F. Davis, “A technology acceptance model for empirically testing newend-user information systems: Theory and results,” Ph.D. dissertation,MIT...
    • V. Venkatesh and F. D. Davis, “A theoretical extension of the technology acceptance model: Four longitudinal field studies,” Manage. Sci.,...
    • V. Venkatesh and H. Bala, “Technology acceptance model 3 anda research agenda on interventions,” Decis. Sci., vol. 39, no. 2,pp. 273–315,...
    • C.-H. Lin, H.-Y. Shih, and P. J. Sher, “Integrating technology readinessinto technology acceptance: The TRAM model,” Psychol. Marketing,vol....
    • J. Oh and S.-J. Yoon, “Validation of haptic enabling technologyacceptance model (HE-TAM): Integration of IDT and TAM,”Telematics Informat.,...
    • H. Alqahtani and M. Kavakli, “A theoretical model to measure user’sbehavioural intention to use iMAP-CampUS app,” in Proc. 12th IEEEConf....
    • E. Pantano, A. Rese, and D. Baier, “Enhancing the online decisionmakingprocess by using augmented reality: A two country comparisonof youth...
    • A. Balog and C. Pribeanu, “The role of perceived enjoyment in thestudents’ acceptance of an augmented reality teaching platform: Astructural...
    • I. Ajzen, “The theory of planned behavior,” Organizational Behav.Hum. Decis. Processes, vol. 50, no. 2, pp. 179–211, Dec. 1991, doi:10.1016/0749-5978(91)90020-T.
    • J. Lewis, B. Utesch, and D. Maher, “UMUX-LITE,” in Proc. SIGCHIConf. Hum. Factors Comput. Syst., Apr. 2013, pp. 2099–2102, doi:10.1145/2470654.2481287.
    • A. Parasuraman, “Technology readiness index (tri): A multiple-itemscale to measure readiness to embrace new technologies,” J. Service Res.,vol....

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