Hussain Altaf, Li Shuaiyong, Hussain Tariq, Attar Razaz Waheeb, Alhomoud Ahmed, Alsagri Reem, Zaman Khalid
School of Computer Science and Technology, Chongqing University of Posts and Telecommunications, Chongqing 400065, China.
Key Laboratory of Industrial Internet of Things and Networked Control, Ministry of Education, Chongqing University of Posts and Telecommunications, Chongqing 400065, China.
Sensors (Basel). 2025 Jan 6;25(1):286. doi: 10.3390/s25010286.
This paper introduces a novel energy-efficient lightweight, void hole avoidance, localization, and trust-based scheme, termed as Energy-Efficient and Trust-based Autonomous Underwater Vehicle (EETAUV) protocol designed for 6G-enabled underwater acoustic sensor networks (UASNs). The proposed scheme addresses key challenges in UASNs, such as energy consumption, network stability, and data security. It integrates a trust management framework that enhances communication security through node identification and verification mechanisms utilizing normal and phantom nodes. Furthermore, a 6G communication module is deployed to reduce network delay and enhance packet delivery, contributing to more efficient data transmission. Leveraging Autonomous Underwater Vehicles (AUVs), the EETAUV protocol offers a lightweight approach for node discovery, identification, and verification while ensuring a high data transmission rate through a risk-aware strategy including at low computational cost. The protocol's performance is evaluated through extensive simulations and compared against state-of-the-art methods across various metrics, including network lifetime, throughput, residual energy, packet delivery ratio, mean square error, routing overhead, path loss, network delay, trust, distance, velocity, Computational Cost of Routing, and data security. The results demonstrate the superior cumulative performance of the proposed EETAUV scheme, making it a robust solution for secure, efficient, and reliable communication in UASNs.
本文介绍了一种新颖的节能轻量级、避免空洞、定位和基于信任的方案,称为面向支持6G的水下声学传感器网络(UASN)设计的节能与信任自主水下航行器(EETAUV)协议。该方案解决了UASN中的关键挑战,如能量消耗、网络稳定性和数据安全。它集成了一个信任管理框架,通过利用正常节点和虚拟节点的节点识别与验证机制来增强通信安全。此外,部署了一个6G通信模块以减少网络延迟并提高数据包交付率,有助于实现更高效的数据传输。借助自主水下航行器(AUV),EETAUV协议提供了一种轻量级的节点发现、识别和验证方法,同时通过包括低计算成本在内的风险感知策略确保高数据传输速率。通过广泛的模拟对该协议的性能进行评估,并与各种指标下的现有方法进行比较,这些指标包括网络寿命、吞吐量、剩余能量、数据包交付率、均方误差、路由开销、路径损耗、网络延迟、信任、距离、速度、路由计算成本和数据安全。结果表明,所提出的EETAUV方案具有卓越的累积性能,使其成为UASN中安全、高效和可靠通信的强大解决方案。