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Reliable and energy efficient routing protocol (REEP) for underwater wireless sensor networks (UWSNs)

机译:水下无线传感器网络(UWSN)的可靠且节能的路由协议(REEP)

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In this paper we focus on routing's issues in UWSN and propose an adaptive and lifetime aware routing protocol, REEP (Reliable and Energy Efficient Protocol). Research on acoustic channel has conducted from decades but that focused mostly on issues related to physical layer such as high latency, low bandwidth and high bit error. However, research on routing layer in UWSN is still in its infant stage and in need of a standard operational protocol. Due to unique nature of acoustic communication we cannot directly implement protocols defined for terrestrial sensor network or MANET. However, different researchers put their efforts to define a standard operational protocol for UWSN but most of these protocols follow OSI layer structure, which were proposed for wired Network and does not suit well acoustic environment. Our proposed routing protocol uses generic MAC protocol and aims to improve network lifetime by evenly distributing residual energy of nodes and by finding most suitable and economical routing path for data transmission. REEP uses ToA (Time of Arrival) to find node distance to its respective sink and utilizes this information to find best available routing path. We use NS2 based simulator, Aquasim to simulate and compare performance of REEP with a well known pre-existing UWSN routing protocol, DBR (Depth Based Routing). Simulation results show that REEP out-perform DBR by energy efficiency, extending network life time and by reducing end to end delay.
机译:在本文中,我们着眼于UWSN中的路由问题,并提出了一种自适应且具有生命周期意识的路由协议REEP(可靠和节能协议)。关于声信道的研究已经进行了几十年,但主要集中在与物理层有关的问题上,例如高等待时间,低带宽和高位错误。但是,UWSN中关于路由层的研究仍处于起步阶段,需要标准的操作协议。由于声学通信的独特性质,我们无法直接实现为地面传感器网络或MANET定义的协议。但是,不同的研究人员竭尽全力为UWSN定义标准的操作协议,但是这些协议大多数遵循OSI层结构,这是为有线网络提出的,并不适合良好的声学环境。我们提出的路由协议使用通用的MAC协议,旨在通过平均分配节点的剩余能量并找到最合适,最经济的数据传输路径来延长网络寿命。 REEP使用ToA(到达时间)来找到到其相应宿点的节点距离,并利用此信息来找到最佳的可用路由路径。我们使用基于NS2的模拟器Aquasim来模拟REEP的性能,并将其与众所周知的UWSN路由协议DBR(基于深度的路由)进行比较。仿真结果表明,REEP在能效,延长网络寿命和减少端到端延迟方面均优于DBR。

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