A SMART ROUTING-TRANSMISSION PROTOCOL FOR BURSTY DATA IN WIRELESS SENSOR NETWORK
About this article
Received: 16/11/23                Revised: 28/03/24                Published: 29/03/24Abstract
Three important issues in sending bursty data from a multimedia node (MN) in a wireless sensor network (WSN) are high reliability in data transmission, low delay in image transmission, and low energy consumption. This paper proposes a smart routing-transmission protocol (SRTP) for fast and reliable image delivery. In this approach, a data path that includes a path node and a collaborative node at each tree level is established. Then, the nodes collaborate to forward packets reliably to nodes one level lower. Packets can be transmitted in a pipelined manner using multiple channels and a spatial slot reuse technique. Simulation results and analysis showed that the proposed protocol far outperforms the recent approach in terms of end-to-end delay and packet delivery rate while achieving low energy consumption.
Keywords
Full Text:
PDF (Tiếng Việt)References
[1] W. Zhang et al., "Adaption Resizing Communication Buffer to Maximize Lifetime and Reduce Delay for WVSNs," IEEE Access, vol. 7, pp. 48266-48287, 2019.
[2] V. Jeličić and V. Bilas, "Reducing power consumption of image transmission over IEEE 802.15.4/ZigBee sensor network," in 2010 IEEE Instrumentation & Measurement Technology Conference Proceedings, 2010, pp. 1211-1215.
[3] C. Li, P. Wang, H. Chen, and M. Guizani, "A Cluster Based On-demand Multi-Channel MAC Protocol for Wireless Multimedia Sensor Networks," in 2008 IEEE International Conference on Communications, 2008, pp. 2371-2376.
[4] S. Li, J. G. Kim, D. Han, and K. S. Lee, "A Survey of Energy-Efficient Communication Protocols with QoS Guarantees in Wireless Multimedia Sensor Networks," Sensors (Basel, Switzerland), vol. 19, no. 1, p. 199, 2019.
[5] M. E. E. D. A. E. Kader, A. A. A. Youssif, and A. Z. Ghalwash, "Energy Aware and Adaptive Cross-Layer Scheme for Video Transmission Over Wireless Sensor Networks," IEEE Sensors Journal, vol. 16, no. 21, pp. 7792-7802, 2016.
[6] B. T. Nguyen, L. Murphy, and G. Muntean, "Energy-Efficient QoS-Based Congestion Control for Reliable Communications in Wireless Multimedia Sensor Networks," in 2018 IEEE International Conference on Communications Workshops (ICC Workshops), 2018, pp. 1-6.
[7] N. Abbas and F. Yu, "A Traffic Congestion Control Algorithm for Wireless Multimedia Sensor Networks," in IEEE Sensors, 2018, pp. 1-4.
[8] W. Yang, D. Li, and F. Liang, "Sina Weibo Bursty Event Detection Method," IEEE Access, vol. 7, pp. 163160-163171, 2019.
[9] D. H. Hoang and T. T. D. Le, "RCOAP: A Rate Control Scheme for Reliable Bursty Data Transfer in IoT Networks," IEEE Access, vol. 9, pp. 169281-169298, 2021.
[10] D. Georgantas and P. Baziana, "Traffic Burstiness Study of an Efficient Bandwidth Allocation MAC Scheme for WDM Datacenter Networks," in 2023 IEEE International Mediterranean Conference on Communications and Networking (MeditCom), 2023, pp. 169-174.
[11] S. M. Aziz and D. M. Pham, "Energy Efficient Image Transmission in Wireless Multimedia Sensor Networks," IEEE Communications Letters, vol. 17, no. 6, pp. 1084-1087, 2013.
[12] D. Pyeon and H. Yoon, "An efficient multi-path pipeline transmission for a bulk data transfer in IEEE 802.15.4 multi-hop networks," Wireless Networks, vol. 25, no. 1, pp. 117-130, 2019.
[13] O. Incel, L. Hoesel, P. Jansen, and P. Havinga, "MC-LMAC: A multi-channel MAC protocol for wireless sensor networks," Ad Hoc Networks, vol. 9, pp. 73-94, 2011.
[14] V. Gabale, K. Chebrolu, B. Raman, and S. Bijwe, "PIP: A multichannel, TDMA-based MAC for efficient and scalable bulk transfer in sensor networks," ACM Transactions on Sensor Networks, vol. 8, no. 4, pp. 1-34, 2012.
[15] P. Vinh and H. Oh, "Optimized Sharable-Slot Allocation Using Multiple Channels to Reduce Data-Gathering Delay in Wireless Sensor Networks," Sensors, vol. 16, p. 505, 2016.DOI: https://doi.org/10.34238/tnu-jst.9242
Refbacks
- There are currently no refbacks.





