
Research Article
P-TECS: An Energy Balance Algorithm for Opportunistic Networks Integrating Multiple Node Attributes
@INPROCEEDINGS{10.1007/978-3-031-30623-5_11, author={Gang Xu and Xiaoying Yang and Jingjian Chen and Baoqi Huang}, title={P-TECS: An Energy Balance Algorithm for Opportunistic Networks Integrating Multiple Node Attributes}, proceedings={Security and Privacy in New Computing Environments. 5th EAI International Conference, SPNCE 2022, Xi’an, China, December 30-31, 2022, Proceedings}, proceedings_a={SPNCE}, year={2023}, month={4}, keywords={Opportunistic routing algorithms resource availability rate node social engagement communication relay degree}, doi={10.1007/978-3-031-30623-5_11} }
- Gang Xu
Xiaoying Yang
Jingjian Chen
Baoqi Huang
Year: 2023
P-TECS: An Energy Balance Algorithm for Opportunistic Networks Integrating Multiple Node Attributes
SPNCE
Springer
DOI: 10.1007/978-3-031-30623-5_11
Abstract
This paper proposes an energy balance opportunistic networks routing algorithm P-TECS. The P-TECS solves the problems of energy consumption of key nodes in existing opportunistic routing algorithms. This paper defines the relay degree of communication between nodes, and designs a P-TECS opportunistic routing algorithm integrating dynamic attributes of multiple nodes. Simulation results show that in resource-constrained opportunistic networks, P-TECS significantly improves the message delivery rate and average remaining energy of nodes, and significantly reduces the routing overhead rate.
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