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Three hops reliability model for Underwater Wireless Sensor Network

机译:三种啤酒花可靠性模型用于水下无线传感器网络

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Due to the instability of underwater environment, the reliable data transfers is more sensitive issue in Underwater Wireless Sensor Networks (UWSNs) as compare to land based sensor network. Underwater networks are mostly designed by acoustic sensor nodes and surface sinks that are connected to any onshore control center. Acoustic channel characteristics are create many problems like, low bandwidth; long propagation delays and high error channel rates that can cause to hamper the efficiency of UWSNs. With these constraints, it is very difficult task to design a routing protocol which has the ability to maximize the reliability of these networks. In this paper, we proposed a reliable model with the name of 3 Hop-Reliability Model (3H-RM), in which every sender node of each group of three layers will maintain the copy of same successful transferred data packets without creating extra burden on the networks. Simulation results shows that 3H-RM can achieve better delivery ratios as compare to 2H-ACK reliability model without using any additional resources and configurations.
机译:由于水下环境的不稳定,可靠的数据传输在水下无线传感器网络(UWSNS)中是与基于陆地传感器网络的更敏感的问题。水下网络主要由声学传感器节点和曲面水槽设计,连接到任何陆上控制中心。声道特征是产生许多问题,如低带宽;长传播延迟和高误差信道速率可能导致妨碍UWSN的效率。通过这些约束,设计路由协议是非常困难的任务,该路由协议具有最大化这些网络的可靠性的能力。在本文中,我们提出了一种可靠的模型,名称为3跳可靠性模型(3H-RM),其中每组三层的每个发件人节点都将维持同一成功转移数据包的副本,而不会产生额外的负担网络。仿真结果表明,3H-RM可以实现更好的交付比,与2H-ACK可靠性模型相比,而无需使用任何额外的资源和配置。

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