Energy-Efficient Data Transmission Protocols in IoT Networks

  • Authors

    • Isabella Moore HR Director, Siemens, Germany Author

    DOI:

    https://doi.org/10.67228/30716357/IJMRSE-2018PII1D9V

    Published 08-03-2018

  • Energy-Efficient Transmission, Iot Networks, Data Aggregation, Duty Cycling, Adaptive Transmission Power, Sleep Scheduling, Wireless Sensor Networks (Wsns), Latency, Energy Consumption, Protocol Optimization

    Issue

    Section

    Articles

    How to Cite

    Energy-Efficient Data Transmission Protocols in IoT Networks. (2018). International Journal of Modern Research in Science & Engineering, 1(2), 01-10. https://doi.org/10.67228/30716357/IJMRSE-2018PII1D9V
  • Abstract

    The rapid expansion of the Internet of Things (IoT) has led to the proliferation of interconnected devices that generate and exchange vast amounts of data. Efficient data transmission in IoT networks is a crucial factor in ensuring energy conservation, as most IoT devices operate on battery power and are often deployed in remote locations. Energy-efficient data transmission protocols are essential in prolonging the lifespan of these devices, reducing operational costs, and improving network efficiency. This paper explores various energy-efficient data transmission protocols tailored for IoT networks, focusing on mechanisms such as duty cycling, data aggregation, adaptive transmission power, and sleep scheduling. The discussion encompasses recent advancements in the field, comparative analyses of different protocols, and their effectiveness in real-world IoT applications. Additionally, it presents an evaluation of trade-offs between energy efficiency and data reliability, latency, and security. A detailed methodology section outlines experimental setups used to assess protocol performance, followed by a results and discussion section that highlights key findings. The study concludes with insights on future directions and potential improvements in energy-efficient transmission protocols for IoT networks.

  • References

    [1] J.-W. Kim, J. R. Ramos Barrado, and D.-K. Jeon, “An Energy-Efficient Transmission Scheme for Real-Time Data in Wireless Sensor Networks,” Sensors, vol. 15, no. 5, pp. 11628–11652, 2015.

    [2] S. Smaragdakis, I. Matta, and A. Bestavros, “SEP: A Stable Election Protocol for Clustered Heterogeneous Wireless Sensor Networks,” Proceedings of the ACM International Conference on Embedded Networked Sensor Systems, 2004.

    [3] Y. H. Lee and M. Gerla, “Energy-Efficient and Collision-Free Data Gathering Protocols in Wireless Sensor Networks,” Ad Hoc Networks, vol. 7, no. 6, pp. 1022–1037, 2009.

    [4] B. Dezfouli and A. Aliahmadi, “An Energy-Efficient and Secure Data Transmission Protocol in IoT Systems,” Future Generation Computer Systems, vol. 86, pp. 995–1008, 2018.

    [5] S. Garg and S. Jain, “Energy-Efficient and Secure Data Transmission Protocol for Wireless Sensor Networks,” Procedia Computer Science, vol. 45, pp. 159–168, 2015.

    [6] Vidushi Vashishth et al., “An Energy Efficient Routing Protocol for Wireless Internet-of-Things Sensor Networks,” arXiv preprint, 2018.

    [7] Heinzelman, W. R., Chandrakasan, A., & Balakrishnan, H. (2000). Energy-Efficient Communication Protocol for Wireless Microsensor Networks. Proceedings of the 33rd Hawaii International Conference on System Sciences (HICSS).

    [8] Lindsey, S., Raghavendra, C. S., & Sivalingam, K. M. (2002). Data Gathering Algorithms in Sensor Networks Using Energy Metrics. IEEE Transactions on Parallel and Distributed Systems, 13(9), 924–935.

    [9] Intanagonwiwat, C., Govindan, R., & Estrin, D. (2000). Directed Diffusion: A Scalable and Robust Communication Paradigm for Sensor Networks. Proceedings of the 6th Annual International Conference on Mobile Computing and Networking (MobiCom).

    [10] Yick, J., Mukherjee, B., & Ghosal, D. (2008). Wireless Sensor Network Survey. Computer Networks, 52(12), 2292–2330.

    [11] Al-Fuqaha, A., Guizani, M., Mohammadi, M., Aledhari, M., & Ayyash, M. (2015). Internet of Things: A Survey on Enabling Technologies, Protocols, and Applications. IEEE Communications Surveys & Tutorials, 17(4), 2347–2376.

    [12] Anastasi, G., Conti, M., Di Francesco, M., & Passarella, A. (2009). Energy Conservation in Wireless Sensor Networks: A Survey. Ad Hoc Networks, 7(3), 537–568.

    [13] Akkaya, K., & Younis, M. (2005). A Survey on Routing Protocols for Wireless Sensor Networks. Ad Hoc Networks, 3(3), 325–349.

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