EAPTEEN: Energy-Aware Adaptable Routing for Continuous Monitoring in Event-Driven Wireless Sensor Networks the EAPTEEN Approach
摘要
Due to WSN’s many uses in agriculture, mechanical assembly, military surveillance, ecological checking, clinical and medical care, disaster recovery duties, and so on, advances in the WSN sphere have gained speed in recent years. To facilitate communication between themselves, the wireless sensor nodes in a WSN are structured in a completely random fashion. One of the main limitations of WSN is energy since the nodes are battery-powered.This paper proposes the EAPTEEN Method for Energy-Aware Adaptable Routing for continuous monitoring in WSN. The “Enhanced Adaptable Periodic Threshold Sensitive Energy Efficient Sensor Network Protocol (EAPTEEN) Approach” introduces a new routing protocol that maximizes energy efficiency and maintains continuous monitoring in event-driven WSNs. Current protocols, like TEEN, prioritize data transmission when thresholds are exceeded, which can result in gaps in monitoring during inactive periods and the possibility of missing important events. Additionally, EAPTEEN enhances TEEN by enabling sensor nodes to consistently send data to the base station at set intervals, regardless of any threshold conditions. The suggested method may respond to changes in the network including topological dynamic changes, node failures, and energy level variations. Focus of the discussion of experimental findings is the present method and assessment of network performance criteria including latency, energy, and throughput.