INVESTIGATION ON ENERGY BASED DATA GATHERING APPROACH FOR WSN
DOI:
https://doi.org/10.24297/jac.v12i25.4423Keywords:
WSN, Data Gathering Rate, Path Reselection, Estimation of information gathering, overhead, round trip time and link availability.Abstract
Wireless Sensor Networks plays a vital role in all emerging areas of Wireless Platforms like Interne of Things (IoT), WiFi, WiMAX etc. Sensor nodes are communicated with or without the presence of administrator. Data gathering is a major issue in WSN which influences the throughput, energy and data delivery. In previous research, there was not taken efforts to focus on balanced data gathering. In this research, we propose Reliable Energy Efficient Data Gathering Approach (REEDGA) to balance data gathering and overhead. To achieve this, proposed work consists of three phases. In first phase, estimation of information gathering is implemented through stable paths. Stable paths are found based on link cost. In second phase, data gathering phase is initialized to save energy in the presence of mobile sensor nodes. Overhead is kept low while keeping round trip time of gathered data. From the analytical simulation using NS2, the proposed approach achieves better performance in terms of data delivery rate, data gathering rate, throughput, delay, link availability and control overhead.
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2. C. Gui and P. Mohapatra, 2004. Power Conservation and Quality of Surveillance in Target Tracking Sensor Networks, In ACM MobiCom.
3. C. Intanagonwiwat, R. Govindan, and D. Estrin, 2000. Directed Diffusion: A Scalable and Robust Communication Paradigm for Sensor Networks, In ACM MobiCom.
4. Jawaad Ullah Khan and Ho-Shin Cho, 2015. A Distributed Data-Gathering Protocol using AUV in Underwater Sensor Networks, Sensors, Vol.15, 19331-19350.
5. Dheeraj D. Umardand and Chirchi V. R, 2016. Mobile Sink-based Self Adaptive and Energy Efficient Proactive Data Collection Protocol for Wireless Sensor Network, International Journal of Computer Applications, Vol.144, No.7, 17-24.
6. P.Anuja and Dr.S.Raju, 2016. Energy Efficient, Lifetime Improving and Secure Periodic Data Collection Protocol For Wireless Sensor Networks, International Journal on Computational Science & Applications (IJCSA), Vol.6, No. 3, 1-11.
7. Lei Quan, Song Xiao, Member, IEEE, Xiao Xue, and Cunbo Lu, 2016. Neighbor-Aided Spatial-Temporal Compressive Data Gathering in Wireless Sensor Networks, IEEE Communications Letters, Vol. 20, No. 3, 578-581.
8. ZhangBing Zhou, Member, IEEE, Chu Du, Lei Shu, Member, IEEE, Gerhard Hancke, Senior Member, IEEE, Jianwei Niu, Senior Member, IEEE, and Huansheng Ning, 2016. An Energy-Balanced Heuristic for Mobile Sink Scheduling in Hybrid WSNs, IEEE Transactions on Industrial Informatics, Vol.12, No.1, 28-40.
9. Dariush Ebrahimi and Chadi, 2016. On the Interaction between Scheduling and Compressive Data Gathering in Wireless Sensor Networks, IEEE Transactions on Wireless Communications, Vol. 15, No. 4, 2845-2858.
10. Saud Althunibat, Amir Abu-Al-Aish, Wael F. Abu Shehab, and Wael H. Alsawalmeh, 2016. Auction-based Data Gathering Scheme for Wireless Sensor Networks, IEEE Communications Letters, Vol. 20, No. 6, 1223-1226.
11. Songtao Guo, Member, IEEE, Yuanyuan Yang, Fellow, IEEE, and Cong Wang, 2016. DaGCM: A Concurrent Data Uploading Framework for Mobile Data Gathering in Wireless Sensor Networks, IEEE Transactions on Mobile Computing, Vol. 15, No. 3, 610-626.
12. CongWang, Ji Li, Fan Ye, and Yuanyuan Yang, Fellow, IEEE, 2016. A Mobile Data Gathering Framework for Wireless Rechargeable Sensor Networks with Vehicle Movement Costs and Capacity Constraints, IEEE Transactions on Computers, Vol. 65, No. 8, 2411-2427.
13. Chul-Ho Lee, Jaewook Kwak, and Do Young Eun, 2016. Towards Distributed Optimal Movement Strategy for Data Gathering in Wireless Sensor Networks, IEEE Transactions on Parallel and Distributed Systems, Vol. 27, No. 2, 574-584.
14. Abdullah I. Alhasanat, Ahmad Ali Alhasanat2, Khitam M. Alatoun3, Aws AlQaisi, 2015. Data Gathering in Wireless Sensor Networks Using Intermediate Nodes, International Journal of Computer Networks & Communications (IJCNC), Vol.7, No.1, 113-124.
15. Gaurav Kumar Pandey and Amrit Pal Singh, 2015. Energy Conservation and Efficient Data Collection in WSN-ME: A Survey, Indian Journal of Science and Technology, Vol. 8, No. 17, 1-11.
16. Mariam Alnuaimi, Khaled Shuaib, Klaithem Alnuaimi and Mohammed Abdel-Hafez, 2015. Data Gathering in Delay Tolerant Wireless Sensor Networks Using a Ferry, Sensors, Vol.15, 25809-25830.
17. S.G. Santhi and R. Ramya, 2015. Clustering based Data Collection using Data Fusion in Wireless Sensor Networks, International Journal of Computer Applications, Vol.116, No.9, 21-26.
18. Mohamed Eshaftri, Ahmed Y.Al-Dubai, Imed Romdhani, Muneer Beni Yassien, 2015. A New Energy Efficient Cluster based Protocol for Wireless Sensor Networks, IEEE Proceedings of the Federated Conference on Computer Science and Information Systems, 1209–1214.
19. Zhezhuang Xu , Liquan Chen, Ting Liu, Lianyang Cao and Cailian Chen, 2015. Balancing Energy Consumption with Hybrid Clustering and Routing Strategy in Wireless Sensor Networks, Sensors, 26583-26605.
20. Tran Cong Hung and Phan Thi The, 2015. A Proposal to Reduce Energy Consumption for Wireless Sensor Network, Multidisciplinary Journals in Science and Technology, Journal of Selected Areas in Telecommunications (JSAT), Vol. 5, No. 7, 1-4.
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