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Exploiting Outage and Error Probability of Cooperative Incremental Relaying in Underwater Wireless Sensor Networks

机译:水下无线传感器网络中协作增量中继的中断和错误概率的利用

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摘要

This paper embeds a bi-fold contribution for Underwater Wireless Sensor Networks (UWSNs); performance analysis of incremental relaying in terms of outage and error probability, and based on the analysis proposition of two new cooperative routing protocols. Subject to the first contribution, a three step procedure is carried out; a system model is presented, the number of available relays are determined, and based on cooperative incremental retransmission methodology, closed-form expressions for outage and error probability are derived. Subject to the second contribution, Adaptive Cooperation in Energy (ACE) efficient depth based routing and Enhanced-ACE (E-ACE) are presented. In the proposed model, feedback mechanism indicates success or failure of data transmission. If direct transmission is successful, there is no need for relaying by cooperative relay nodes. In case of failure, all the available relays retransmit the data one by one till the desired signal quality is achieved at destination. Simulation results show that the ACE and E-ACE significantly improves network performance, i.e., throughput, when compared with other incremental relaying protocols like Cooperative Automatic Repeat reQuest (CARQ). E-ACE and ACE achieve 69% and 63% more throughput respectively as compared to CARQ in hard underwater environment.
机译:本文为水下无线传感器网络(UWSN)做出了双重贡献。基于中断和错误概率的增量中继性能分析,并基于两种新的协作路由协议的分析命题。以第一笔捐款为条件,执行三个步骤的程序;给出了系统模型,确定了可用中继的数量,并基于协作增量重传方法,得出了中断和错误概率的闭式表达式。在第二项贡献的基础上,提出了基于能量的自适应合作(ACE)高效深度路由和增强型ACE(E-ACE)。在提出的模型中,反馈机制指示数据传输的成功或失败。如果直接传输成功,则不需要由协作中继节点进行中继。万一发生故障,所有可用的继电器将一一重传数据,直到在目的地达到所需的信号质量为止。仿真结果表明,与其他增量中继协议(如协作自动重发请求(CARQ))相比,ACE和E-ACE显着提高了网络性能,即吞吐量。与硬水下环境中的CARQ相比,E-ACE和ACE的吞吐量分别提高了69%和63%。

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