Modelo para Amparar o Desenvolvimento de Protótipos de Sistemas IoT

Resumo


O termo Internet das Coisas descreve um ambiente onde bilhões de objetos são conectados à Internet e interagem autonomamente. Entretanto, existem desafios no desenvolvimento destes sistemas. As diferentes percepções dos envolvidos e o uso distintos de recursos computacionais podem tornar os requisitos inconsistentes. Dessa forma, caracteriza-se a necessidade de um modelo de prototipação que ampare nos processos de elicitação, análise e visualização dos requisitos desses sistemas. Este artigo relata uma pesquisa, que busca amparar o desenvolvimento de protótipos de sistemas IoT. O modelo reflete uma estrutura de trabalho, para concepção e modelagem visual dos requisitos, com o uso do Design Socialmente Consciente e Realidade Estendida.

Palavras-chave: Internet das Coisas, Design Socialmente Consciente, Realidade Estendida

Referências

Alizadehsalehi, S. and Yitmen, I. (2021). Digital twin-based progress monitoring management model through reality capture to extended reality technologies (drx). Smart and Sustainable Built Environment.

Andrade, T. and Bastos, D. (2019). Extended reality in iot scenarios: Concepts, applications and future trends. In 2019 5th Experiment International Conference (exp. at’19), pages 107–112. IEEE.

Baranauskas, M. C. C. (2014). Social awareness in hci. Interactions, 21(4):66–69.

Baranauskas, M. C. C. et al. (2009). Socially aware computing. In ICECE 2009 VI International Conference on Engineering and Computer Education, pages 1–5.

Chuah, S. H.-W. (2018). Why and who will adopt extended reality technology? literature review, synthesis, and future research agenda. Literature Review, Synthesis, and Future Research Agenda (December 13, 2018).

da Silva, J. V., Baranauskas, M. C. C., and Pereira, R. (2021). Hands on, heads in: Building iot scenarios for learning software engineering. In 2021 XLVII Latin American Computing Conference (CLEI), pages 1–10. IEEE.

da Silva, J. V., Pereira, R., Buchdid, S. B., Duarte, E. F., and Baranauskas, M. C. C. (2016). Sawd - socially aware design: An organizational semiotics-based case tool to support early design activities. In Baranauskas, M. C. C., Liu, K., Sun, L., Neris, V. P. d. A., Bonacin, R., and Nakata, K., editors, Socially Aware Organisations and Technologies. Impact and Challenges, pages 59–69, Cham. Springer International Publishing.

Engström, E., Storey, M.-A., Runeson, P., H ¨ ost, M., and Baldassarre, M. T. (2020). How software engineering research aligns with design science: a review. Empirical Software Engineering, 25(4):2630–2660

Ferrari, B., Junior, D. S., Oliveira, C. M., Ortiz, J. S., and Pereira, R. (2019). Design socialmente consciente de jogos: relato de uma oficina prática para o entendimento do problema e prospecção de ideias. In Anais do I Workshop sobre Interação e Pesquisa de Usuários no Desenvolvimento de Jogos, pages 11–20. SBC.

Han, B. and Leite, F. (2022). Generic extended reality and integrated development for visualization applications in architecture, engineering, and construction. Automation in Construction, 140:104329.

Larrucea, X., Combelles, A., Favaro, J., and Taneja, K. (2017). Software engineering for the internet of things. IEEE Software, 34(1):24–28.

Pereira, R., Baranauskas, M. C., and da Silva, S. R. (2013). Social software and educational technology: Informal, formal and technical values. Educational Technology & Society, 16:4–14.

Reggio, G. (2018). A uml-based proposal for iot system requirements specification. In Proceedings of the 10th international workshop on modelling in software engineering, pages 9–16.

Silva, D., Gonc¸alves, T. G., and da Rocha, A. R. C. (2019a). A requirements engineering process for iot systems. In Proceedings of the XVIII Brazilian symposium on software quality, pages 204–209.

Silva, J. V. d., Baranauskas, M. C. C., Moreira, E. A., Muriana, L. M., and Santos, A. C. d. (2019b). Reclaiming human space at iot: Contributions of the socially aware design. In Proceedings of the 18th Brazilian Symposium on Human Factors in Computing Systems, pages 1–11.

Silva, J. V. d., Pereira, R., Hayashi, E., and Baranauskas, M. C. C. (2018). Design practices and the sawd tool: Towards the opendesign concept. In International Conference on Informatics and Semiotics in Organisations, pages 208–217. Springer.

Sommerville, I. et al. (2011). Engenharia de software.[sl]. Pearson Education, 19:60.

Souza Rodrigues, S., Luiz da Silva Genesio, V., Maria Barroso Paiva, D., and Pontin de Mattos Fortes, R. (2020). A case study on how brazilian companies deal with the user experience in iot projects. In Proceedings of the 38th ACM International Conference on Design of Communication, pages 1–7.

Weyrich, M. and Ebert, C. (2015). Reference architectures for the internet of things. IEEE Software, 33(1):112–116.

Zabadal, B. M. and de Castro, B. F. L. M. (2017). Iot e seus principais desafios. Revista Interdisciplinar de Tecnologias e Educação, 3(1).

Zambonelli, F. (2017). Key abstractions for iot-oriented software engineering. IEEE Software, 34(1):38–45.
Publicado
13/06/2022
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ALMEIDA, Eduarda Maganha de. Modelo para Amparar o Desenvolvimento de Protótipos de Sistemas IoT. In: CONGRESSO IBERO-AMERICANO EM ENGENHARIA DE SOFTWARE (CIBSE), 25. , 2022, Córdoba. Anais [...]. Porto Alegre: Sociedade Brasileira de Computação, 2022 . p. 400-407. DOI: https://doi.org/10.5753/cibse.2022.20990.