利用高能效路由协议缓解物联网水下WSN中的空洞

M. Awais, N. Javaid, Nidal Naseer, M. Imran
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引用次数: 6

摘要

近年来,在物联网水下无线传感器网络(IoT-UWSNs)中提出了不同的路由协议,以探索水下环境,用于不同的目的,即科学和军事目的。然而,高能耗(EC)、端到端(E2E)延迟、低分组传输比(PDR)和最小网络生存期使得水下无线传感器网络(UWSN)的高能效通信成为一项具有挑战性的任务。高端到端时延、EC和可靠的数据传输是提高网络吞吐量的关键问题。为此,本文提出了两种节能路由协议,即基于最短路径避免碰撞的节能路由(SP-CBE2R)协议和基于改进的避免碰撞的节能路由(Im-CBE2R)协议。在这一端,两种路由协议都最小化了空穴发生的概率,并反过来最小化了EC和E2E延迟。在这两种路由协议中,快递节点被放置在不同的战略位置,以保持贪婪转发的持续。本文还从分组大小(Packet Size, PS)和数据速率(Data Rate, DR)两个方面对所提出的路由协议进行了分析。此外,还进行了各种模拟以验证所提出的路由协议。仿真结果表明,所提出的路由协议优于同类基准路由协议。
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Exploiting Energy Efficient Routing protocols for Void Hole Alleviation in IoT enabled Underwater WSN
In recent times, different routing protocols have been proposed in the Internet of Things enabled Underwater Wireless Sensor Networks (IoT-UWSNs) to explore the underwater environment for different purposes, i.e., scientific and military purposes. However, high Energy Consumption (EC), End to End (E2E) delay, low Packet Delivery Ratio (PDR) and minimum network lifetime make the energy efficient communication a challenging task in Underwater Wireless Sensor Network (UWSN). The high E2E delay, EC and reliable data delivery are the critical issues, which play an important role to enhance the network throughput. So, this paper presents two energy efficient routing protocols namely: Shortest Path-Collision avoidance Based Energy Efficient Routing (SP-CBE2R) protocol and Improved-Collision avoidance Based Energy Efficient Routing (Im-CBE2R) protocol. At this end, both routing protocols minimize the probability of void hole occurrence and in return minimizes the EC and E2E delay. In both routing protocols, courier nodes are positioned at different strategic locations to keep the greedy forwarding continuous. The proposed routing protocols are also analyzed by varying the Packet Size (PS) and Data Rate (DR). Additionally, various simulations have been performed to authenticate the proposed routing protocols. Simulation results show that the proposed routing protocols outperform the baseline routing protocols in counterparts.
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