A distributed energy-efficient coverage holes detection and recovery method in wireless sensor networks using the grasshopper optimization algorithm
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Computer Science
Link
https://link.springer.com/content/pdf/10.1007/s12652-022-04024-3.pdf
Reference27 articles.
1. Abhilash CN , Manjula SH , Tanuja R , Venugopal KR (2021) Shortest path discovery for area coverage (spdac) using prediction-based clustering in wsn. In: Advances in artificial intelligence and data engineering, pp. 1345–1357. Springer
2. Alhaddad ZA, Manimurugan S (2021) Maximum coverage area and energy aware path planner in wsn. Materials today: proceedings
3. Balhwan S, Gupta D, Reddy SRN , et al (2019) Smart parking-a wireless sensor networks application using iot. In: Proceedings of 2nd International Conference on Communication, Computing and Networking, pp 217–230. Springer
4. Biswas S, Das R, Chatterjee P (2018) Energy-efficient connected target coverage in multi-hop wireless sensor networks. In Industry interactive innovations in science, engineering and technology, pages 411–421. Springer
5. Das S, Debbarma MK (2020) Chpt: an improved coverage-hole patching technique based on tree-center in wireless sensor networks. J Ambient Intell Hum Comput, pp 1–12
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