Atividade

86938 - Infraestrutura de comunicação de IoT

Período da turma: 25/03/2019 a 20/05/2019

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Descrição: 1. Introdução, motivação e definições de IoT
2. Arquiteturas, arcabouços e soluções para IoT
3. Tecnologias de comunicação: IEEE 802.15.4, IEEE802.11, Bluetooth
4. Padrões IETF
5. Uso do paradigma SDN
6. Segurança
7. Aplicações de IoT
8. Desafios e oportunidades em IoT

BIBLIOGRAFIA

• Software-defined Networking in the Wireless Sensor Networks and the Internet of Things Context. B. T. OLIVEIRA; Cíntia B. Margi. Tutorial apresentado no IEEE Winter Academy on Internet of Things - In conjunction with the 2nd IEEE World Forum on Internet of Things, 2015. http://wfiot2015.ieee-wf-iot.org/winteracademy.html#soft_abs
• Comunicação, segurança e gerenciamento em redes de sensores sem fio. Cíntia Borges Margi Tese de Livre-docência. Universidade de São Paulo, USP, Brasil. 2015.
• Enabling the internet of things, R. Want, B. N. Schilit, and S. Jenson. Computer, vol. 48, no. 1, pp. 28–35, Jan 2015.
• Sensing IoT. Irena Bojanova. http://www.computer.org/web/sensing-iot
• IEEE P2413 WG: Standard for an Architectural Framework for the Internet of Things (IoT). http://grouper.ieee.org/groups/2413/Intro-to-IEEE-P2413.pdf
• Software-Defined Wireless Sensor Networks and Internet of Things Standardization Synergism. Oliveira, B. T. ; Alves, R. C. A. ; Margi, Cíntia Borges . In: 2015 IEEE Conference on Standards for Communications and Networking (CSCN), 2015, Tóquio, Japão. p. 96-101. DOI: 10.1109/CSCN.2015.7390421
• TinySDN: Enabling Multiple Controllers for Software-Defined Wireless Sensor Networks. Oliveira, B. T. ; GABRIEL, L. B. ; Margi, C.B. Revista IEEE América Latina, v. 13, p. 3690-3696, 2015. http://dx.doi.org/10.1109/TLA.2015.7387950
• Segurança em Redes de Sensores sem Fio. Margi, Cintia B.; Simplício Jr., M.A. ; Barreto, P. S. L. M. ; CARVALHO, T. C. M. B. Minicursos SBSEG 2009, p. 149-194.
• IEEE, “802.15.4-2011 - IEEE Standard for Local and metropolitan area networks - Part 15.4: Low-Rate Wireless Personal Area Networks (LR- WPANs),” 2011.
• N. Kushalnagar, G. Montenegro, and C. Schumacher, “IPv6 over Low-Power Wireless Personal Area Networks (6LoWPANs): Overview, Assumptions, Problem Statement, and Goals,” RFC 4919 (Informational), Internet Engineering Task Force, Aug. 2007. Available: http://www.ietf.org/rfc/rfc4919.txt
• G. Montenegro, N. Kushalnagar, J. Hui, and D. Culler, “Transmission of IPv6 Packets over IEEE 802.15.4 Networks,” RFC 4944 (Proposed Standard), Internet Engineering Task Force, Sep. 2007, updated by RFCs 6282, 6775. [Online]. Available: http://www.ietf.org/rfc/rfc4944.txt
• T. Winter, P. Thubert, A. Brandt, J. Hui, R. Kelsey, P. Levis, K. Pister, R. Struik, J. Vasseur, and R. Alexander, “RPL: IPv6 Routing Protocol for Low-Power and Lossy Networks,” RFC 6550 (Proposed Standard), Mar. 2012. [Online]. Available: http://www.ietf.org/rfc/rfc6550.txt
• L. Atzori, A. Iera, and G. Morabito, “The internet of things: A survey,” Comput. Netw., vol. 54, no. 15, pp. 2787–2805, Oct. 2010. Available: http://dx.doi.org/10.1016/j.comnet.2010.05.010
• FIWARE - http://www.fiware.org, 2014.
• T. Luo, H.-P. Tan, and T. Q. S. Quek, “Sensor openflow: Enabling software-defined wireless sensor networks.” IEEE Communications Letters, vol. 16, no. 11, pp. 1896–1899, 2012.
• A. D. Gante, M. Aslan, and A. Matrawy, “Smart wireless sensor network management based on software-defined networking,” in Communications (QBSC), 2014 27th Biennial Symposium on, June 2014, pp. 71– 75.
• A. Mahmud and R. Rahmani, “Exploitation of openflow in wireless sensor networks,” in Computer Science and Network Technology (ICC- SNT), 2011 International Conference on, vol. 1, 2011, pp. 594–600.
• S. Costanzo, L. Galluccio, G. Morabito, and S. Palazzo, “Software defined wireless networks: Unbridling sdns,” in Proceedings of the 2012 European Workshop on Software Defined Networking, ser. EWSDN ’12. Washington, DC, USA: IEEE Computer Society, 2012, pp. 1–6.
• V. Tadinada, “Software defined networking: Redefining the future of internet in iot and cloud era,” in Future Internet of Things and Cloud (FiCloud), 2014 International Conference on, Aug 2014, pp. 296–301.

Carga Horária:

24 horas
Tipo: Obrigatória
Vagas oferecidas: 80
 
Ministrantes: Cíntia Borges Margi


 
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