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Communications

A Novel Approach for Enhanced Network Formation in 6TiSCH-based IoT Low-Power and Lossy Networks

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References

  • X. Vilajosana, T. Watteyne, T. Chang, M. Vučinić, S. Duquennoy, and P. Thubert, “IETF 6TiSCH: A tutorial,” IEEE Commun. Surv. Tutorials, Vol. 22, no. 1, pp. 595–615, Sep. 2019.
  • P. Thubert. An architecture for IPv6 over the time-slotted channel hopping mode of IEEE 802.15. 4 (6tisch). InRFC 9030 2021 May.
  • X. Vilajosana, K. Pister, and T. Watteyne. Minimal IPv6 over the TSCH mode of IEEE 802.15. 4e (6TiSCH) configuration. No. rfc8180. 2017.
  • T. Chang, M. Vučinić, X. V. Guillén, D. Dujovne, and T. Watteyne, “6TiSCH minimal scheduling function: Performance evaluation,” Internet Technol. Lett., Vol. 3, no. 4, pp. e170, Jul. 2020.
  • S. J. Hussain, and M. Roopa, “BE-RPL: Balanced-load and energy-efficient RPL,” Comput. Syst. Sci. Eng., Vol. 45, no. 1, pp. 785–801, Jan. 2023.
  • F. Righetti, C. Vallati, A. Gavioli, and G. Anastasi, “Performance evaluation of adaptive autonomous scheduling functions for 6TiSCH networks,” IEEE. Access., Vol. 9, pp. 127576–94, Sep. 2021.
  • A. R. Urke, Ø Kure, and K. Øvsthus, “A survey of 802.15. 4 TSCH schedulers for a standardized industrial internet of things,” Sensors, Vol. 22, no. 1, pp. 15, Dec. 2021.
  • F. Righetti, C. Vallati, S. K. Das, and G. Anastasi, “Analysis of distributed and autonomous scheduling functions for 6TiSCH networks,” IEEE. Access., Vol. 8, pp. 158243–62, Aug. 2020.
  • A. Elsts, S. Kim, H. S. Kim, and C. Kim, “An empirical survey of autonomous scheduling methods for TSCH,” IEEE. Access., Vol. 8, pp. 67147–65, Mar. 2020.
  • S. J. Hussain, and M. Roopa. Performance assessment of the minimal 6TiSCH configuration. in 2022 International Conference on Computing, Communication, Security and Intelligent Systems (IC3SIS), IEEE, Jun. 23, 2022, pp. 1–4.
  • C. Vallati, and E. Mingozzi. Trickle-F: Fair broadcast suppression to improve energy-efficient route formation with the RPL routing protocol. in 2013 Sustainable Internet and ICT for Sustainability (SustainIT), IEEE, Oct. 30, 2013. pp. 1–9.
  • D. De Guglielmo, A. Seghetti, G. Anastasi, and M. Conti. A performance analysis of the network formation process in IEEE 802.15. 4e TSCH wireless sensor/actuator networks. in 2014 IEEE Symposium on Computers and Communications (ISCC), IEEE, Jun. 23, 2014, pp. 1–6.
  • E. Vogli, G. Ribezzo, L. A. Grieco, and G. Boggia. Fast join and synchronization schema in the IEEE 802.15. 4e MAC. In2015 IEEE Wireless Communications and Networking Conference Workshops (WCNCW), IEEE, Mar. 9, 2015. pp. 85–90.
  • E. Vogli, G. Ribezzo, L. A. Grieco, and G. Boggia, “Fast network joining algorithms in industrial IEEE 802.15. 4 deployments,” Ad. Hoc. Netw., Vol. 69, pp. 65–75, Feb. 2018.
  • S. Duquennoy, B. Al Nahas, O. Landsiedel, and T. Watteyne. Orchestra: Robust mesh networks through autonomously scheduled TSCH. in Proceedings of the 13th ACM conference on embedded networked sensor systems 2015 Nov 1. pp. 337–350.
  • T. P. Duy, and Y. Kim. An efficient joining scheme in IEEE 802.15. 4e. in 2015 International Conference on Information and Communication Technology Convergence (ICTC), IEEE, Oct. 28, 2015. pp. 226–229.
  • T. P. Duy, T. Dinh, and Y. Kim, “A rapid joining scheme based on fuzzy logic for highly dynamic IEEE 802.15. 4e time-slotted channel hopping networks,” Int. J. Distrib. Sens. Netw., Vol. 12, no. 8, pp. 1550147716659424, Aug. 2016.
  • D. De Guglielmo, S. Brienza, and G. Anastasi. A model-based beacon scheduling algorithm for IEEE 802.15. 4e TSCH networks. In2016 IEEE 17th International Symposium on A World of Wireless, Mobile and Multimedia Networks (WoWMoM), IEEE, Jun. 21, 2016. pp. 1–9.
  • I. Khoufi, and P. Minet, “An enhanced deterministic beacon advertising algorithm for building TSCH networks,” Ann. Telecommun., Vol. 73, pp. 745–57, Dec. 2018.
  • I. Khoufi, P. Minet, and B. Rmili, “Beacon advertising in an IEEE 802.15. 4e TSCH network for space launch vehicles,” Acta Astronaut., Vol. 158, pp. 76–88, May. 2019.
  • M. Vučinić, T. Watteyne, and X. Vilajosana, “Broadcasting strategies in 6TiSCH networks,” Internet Technol. Lett., Vol. 1, no. 1, pp. e15, Jan. 2018.
  • J. Y. Kim, S. H. Chung, and Y. V. Ha. A fast joining scheme based on channel quality for IEEE802. 15.4 e TSCH in severe interference environment. in 2017 Ninth International Conference on Ubiquitous and Future Networks (ICUFN), IEEE, Jul. 4, 2017, pp. 427–432.
  • C. Vallati, S. Brienza, G. Anastasi, and S. K. Das, “Improving network formation in 6TiSCH networks,” IEEE Trans. Mob. Comput., Vol. 18, no. 1, pp. 98–110, Apr. 2018.
  • A. Karalis. ATP: A fast joining technique for IEEE802. 15. 4-TSCH networks. in 2018 IEEE 19th International Symposium on “A World of Wireless, Mobile and Multimedia Networks" (WoWMoM), IEEE, Jun. 12, 2018, pp. 588–599.
  • A. Karalis, D. Zorbas, and C. Douligeris, “Collision-free advertisement scheduling for IEEE 802.15. 4-TSCH networks,” Sensors, Vol. 19, no. 8, pp. 1789, Apr. 2019.
  • C. M. Algora, E. O. Guerra, S. Montejo-Sánchez, E. M. Fernández, and K. Steenhaut, “A theoretical association time model for IEEE 802.15. 4 TSCH networks,” IEEE Commun. Lett., Vol. 25, no. 2, pp. 656–9, Oct. 2020.
  • B. H. Bae, and S. H. Chung, “Fast synchronization scheme using 2-way parallel rendezvous in IEEE 802.15. 4 TSCH,” Sensors, Vol. 20, no. 5, pp. 1303, Feb. 2020.
  • J. Vera-Pérez, D. Todolí-Ferrandis, S. Santonja-Climent, J. Silvestre-Blanes, and V. Sempere-Payá, “A joining procedure and synchronization for TSCH-RPL wireless sensor networks,” Sensors, Vol. 18, no. 10, pp. 3556, Oct. 2018.
  • J. Vera-Pérez, D. Todolí-Ferrandis, J. Silvestre-Blanes, and V. Sempere-Payá, “Bell-x, an opportunistic time synchronization mechanism for scheduled wireless sensor networks,” Sensors, Vol. 19, no. 19, pp. 4128, Sep. 2019.
  • A. Kalita, and M. Khatua. Faster joining in 6TiSCH network using dynamic beacon interval. in 2019 11th International Conference on Communication Systems & Networks (COMSNETS), IEEE, Jan. 7, 2019, pp. 454–457.
  • A. Kalita, and M. Khatua, “Channel condition based dynamic beacon interval for faster formation of 6TiSCH network,” IEEE Trans. Mob. Comput., Vol. 20, no. 7, pp. 2326–37, Mar. 2020.
  • A. Kalita, and M. Khatua, “Opportunistic transmission of control packets for faster formation of 6TiSCH network,” ACM Trans. Internet Things, Vol. 2, no. 1, pp. 1–29, Jan. 2021.
  • D. Fanucchi, B. Staehle, and R. Knorr, “On the suitability of 6TiSCH for industrial wireless communication,” in Inkommunikation und Bildverarbeitung in der Automation: Ausgewählte Beiträge der Jahreskolloquien KommA und BVAu 2018 2020, Berlin, Heidelberg: Springer, pp. 34–48.
  • A. Kalita, and M. Khatua, “Autonomous allocation and scheduling of minimal cell in 6TiSCH network,” IEEE Internet Things J., Vol. 8, no. 15, pp. 12242–50, Feb. 2021.
  • A. Kalita, and M. Khatua, “Adaptive control packet broadcasting scheme for faster 6TiSCH network bootstrapping,” IEEE Internet Things J., Vol. 8, no. 24, pp. 17395–402, May 2021.
  • M. Mohamadi, B. Djamaa, M. R. Senouci, and A. Mellouk, “FAN: Fast and active network formation in IEEE 802.15. 4 TSCH networks,” J. Netw. Comput. Appl., Vol. 183, pp. 103026, Jun. 2021.
  • Y. Tanaka, P. Minet, T. Watteyne, and F. Teraoka. Accelerating 6TiSCH Network Formation. in 2021 17th International Conference on Distributed Computing in Sensor Systems (DCOSS), IEEE, Jul. 14, 2021, pp. 18–24.
  • J. Vera-Pérez, J. Silvestre-Blanes, and V. Sempere-Payá, “TSCH and RPL joining time model for industrial wireless sensor networks,” Sensors, Vol. 21, no. 11, pp. 3904, Jun. 2021.
  • A. Karalis, D. Zorbas, and C. Douligeris, “Optimal initial synchronization time in the minimal 6TiSCH configuration,” IEEE. Access., Vol. 9, pp. 69316–34, Apr. 2021.
  • G. Oikonomou, S. Duquennoy, A. Elsts, J. Eriksson, Y. Tanaka, and N. Tsiftes, “The Contiki-NG open source operating system for next generation IoT devices,” SoftwareX, Vol. 18, pp. 101089, Jun. 2022.

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