Abstract
Territorial ocean safety and ocean development make it necessary to establish a large-scale, long-term, and low-energy integrated ocean monitoring sensor networks (OMSNs). The High Attitude Platform based OMSN (HAP-OMAN) has provided a promising solution for ocean monitoring. In this paper, we study the node deployment problem in a HAP-OMSN architecture and formulate the problem as a multi-objective linear programming (MOLP) to maximize network lifetime, minimize energy consumption and ensure network’s connectivity, reliability and coverage of target points. Finally, we solve the MOLP by Gurobi, which is a powerful linear programming solver. Numerical analysis through case studies is conducted to verify the feasibility and scalability of the proposed optimization framework in different scales of network scenarios.
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Acknowledgement
This study is sponsored by National Science Foundation of China (NSFC) No. 61771086 and Fundamental Research Funds for Central Universities under grant No. 3132016318.
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Duan, J., Liu, Y., Lin, B., Jiang, Y., Hou, F. (2018). Node Deployment of High Altitude Platform Based Ocean Monitoring Sensor Networks. In: Chellappan, S., Cheng, W., Li, W. (eds) Wireless Algorithms, Systems, and Applications. WASA 2018. Lecture Notes in Computer Science(), vol 10874. Springer, Cham. https://doi.org/10.1007/978-3-319-94268-1_61
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DOI: https://doi.org/10.1007/978-3-319-94268-1_61
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