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Erschienen in: Wireless Personal Communications 2/2021

28.01.2021

Effective Energy Adaptive and Consumption in Wireless Sensor Network Using Distributed Source Coding and Sampling Techniques

verfasst von: S. Manikandan, M. Chinnadurai

Erschienen in: Wireless Personal Communications | Ausgabe 2/2021

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Abstract

Multimedia is the process of handling multiple medium of messages over network with high rate data services in wireless cellular area networks. Communication is the process of exchanging information form one service to another. In wireless networks are significantly growth of affecting network performance and energy consumption. The major problem is end to end delay in each node and meets the quality of services. The followings are considered for implementing wireless sensor network such as reduces the network delay, propagation delay and energy consumption. The senor node can sense the encoding value and reduce the network traffic delay using mitigation method. This paper propose a unique approach to provide simple routing services with reduced traffic delay, end to end delay network performance and to achieve better performance using Distributed Source Coding and Effective Energy Consumption methods. In this paper we use optimal early detection algorithm for improving network performance and energy consumption problem. An iterative Shannon fano and Tuker method is used for finding optimal solution of each node values. Network Simulator-3 is used for simulating network environments and setup the experiments. Our proposed method shows high data rate, good performance and low energy consumptions. The results compare with existing methodologies and performance is good.

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Literatur
2.
Zurück zum Zitat Lia, X., Ji, X., Zgou, X., & Chen, L. (2017). Energy efficient link-delay aware routing in wireless sensor networks. IEEE Sensors Journal, 18(2), 1558–1748. Lia, X., Ji, X., Zgou, X., & Chen, L. (2017). Energy efficient link-delay aware routing in wireless sensor networks. IEEE Sensors Journal, 18(2), 1558–1748.
3.
Zurück zum Zitat Nikolov, M., & Haas, Z. J. (2018). Encoded sensing for energy efficient wireless sensor networks. IEEE Sensors Journal, 18(2), 1558–1748.CrossRef Nikolov, M., & Haas, Z. J. (2018). Encoded sensing for energy efficient wireless sensor networks. IEEE Sensors Journal, 18(2), 1558–1748.CrossRef
4.
Zurück zum Zitat Afshang, M., Dhillon, H. S., & Chong, P. H. J. (2016). Modeling and performance analysis of clustered device-to-device networks. IEEE Transactions on Wireless Communications, 15(7), 4957–4972. Afshang, M., Dhillon, H. S., & Chong, P. H. J. (2016). Modeling and performance analysis of clustered device-to-device networks. IEEE Transactions on Wireless Communications, 15(7), 4957–4972.
7.
Zurück zum Zitat Aziz, L., Raghay, S., Aznaoui, H., & Jamali, A. (2017). A new enhanced version of VLEACH protocol using a smart path selection. International Journal of GEOMATE, 12, 28–34.CrossRef Aziz, L., Raghay, S., Aznaoui, H., & Jamali, A. (2017). A new enhanced version of VLEACH protocol using a smart path selection. International Journal of GEOMATE, 12, 28–34.CrossRef
8.
Zurück zum Zitat Gui, T., Ma, C., Wang, F., & Wilkins, D. E. (2016). Survey on swarm intelligence-based routing protocols for wireless sensor networks: An extensive study. In 2016 IEEE international conference on industrial technology (ICIT). 1944–1949. Gui, T., Ma, C., Wang, F., & Wilkins, D. E. (2016). Survey on swarm intelligence-based routing protocols for wireless sensor networks: An extensive study. In 2016 IEEE international conference on industrial technology (ICIT). 1944–1949.
9.
Zurück zum Zitat Manikandan, S., & Chinnadurai, M. (2019). Intelligent and deep learning approach OT measure E-learning content in online distance education. The Online Journal of Distance Education and E-Learning, 7(3), 2147–6454. Manikandan, S., & Chinnadurai, M. (2019). Intelligent and deep learning approach OT measure E-learning content in online distance education. The Online Journal of Distance Education and E-Learning, 7(3), 2147–6454.
10.
Zurück zum Zitat Yan, J., Zhou, M., & Ding, Z. (2016). Recent advances in energy-efficientrouting protocols for wireless sensor networks: A review. IEEE Access, 4, 5673–5686.CrossRef Yan, J., Zhou, M., & Ding, Z. (2016). Recent advances in energy-efficientrouting protocols for wireless sensor networks: A review. IEEE Access, 4, 5673–5686.CrossRef
11.
Zurück zum Zitat Gupta, P., & Jha, S. (2018). Integrated clustering and routing protocol for wireless sensor networks using Cuckoo and Harmony Search based metaheuristic techniques. Engineering Applications of Artificial Intelligence, 68, 101–109.CrossRef Gupta, P., & Jha, S. (2018). Integrated clustering and routing protocol for wireless sensor networks using Cuckoo and Harmony Search based metaheuristic techniques. Engineering Applications of Artificial Intelligence, 68, 101–109.CrossRef
12.
Zurück zum Zitat Manikandan, S., Chinnadurai, M., Thiruvenkatasuresh, M. P., & Sivakumar, M. (2020). Prediction of human motion detection in video surveillance environment using tensor flow. International Journal of Advanced Science and Technology, 29(05), 2791–2798. Manikandan, S., Chinnadurai, M., Thiruvenkatasuresh, M. P., & Sivakumar, M. (2020). Prediction of human motion detection in video surveillance environment using tensor flow. International Journal of Advanced Science and Technology, 29(05), 2791–2798.
19.
Zurück zum Zitat Hayes, T., & Ali, F. H. (2015). Proactive highly ambulatory sensor routing (PHASeR) protocol for mobile wireless sensor networks. Elsevier Pervasive Mobile Computing, 21, 47–61.CrossRef Hayes, T., & Ali, F. H. (2015). Proactive highly ambulatory sensor routing (PHASeR) protocol for mobile wireless sensor networks. Elsevier Pervasive Mobile Computing, 21, 47–61.CrossRef
20.
Zurück zum Zitat Chong, C. Y., & Kumar, S. P. (2003). Sensor networks: Evolution, opportunities and challenges. Proceedings of IEEE, 91(8), 1247–1256.CrossRef Chong, C. Y., & Kumar, S. P. (2003). Sensor networks: Evolution, opportunities and challenges. Proceedings of IEEE, 91(8), 1247–1256.CrossRef
23.
Zurück zum Zitat Hayes, T., & Ali, F. H. (2016). Robust ad-hoc sensor routing (RASeR) protocol for mobile wireless sensor networks. Ad Hoc Networks, 50, 128–144.CrossRef Hayes, T., & Ali, F. H. (2016). Robust ad-hoc sensor routing (RASeR) protocol for mobile wireless sensor networks. Ad Hoc Networks, 50, 128–144.CrossRef
Metadaten
Titel
Effective Energy Adaptive and Consumption in Wireless Sensor Network Using Distributed Source Coding and Sampling Techniques
verfasst von
S. Manikandan
M. Chinnadurai
Publikationsdatum
28.01.2021
Verlag
Springer US
Erschienen in
Wireless Personal Communications / Ausgabe 2/2021
Print ISSN: 0929-6212
Elektronische ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-021-08081-3

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