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EGRPM: Energy efficient geographic routing protocol based on mobile sink in wireless sensor networks

机译:EGRPM:无线传感器网络中基于移动接收器的节能地理路由协议

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A wireless sensor network consists of a large number of nodes, sending sensed data to the base station or sink, either directly or through intermediate nodes. Multi-hop communication results in increased volume of traffic and depleting the energy of nodes adjacent to static sinks. A method of dealing with this challenge is using mobile sinks. Mobile sinks balance the load and distribute energy consumption throughout the network. This paper suggests a method to divide the network into some cells in a geographic way and applies two mobile sinks to gather the data sensed by these cell nodes. Based on the communication between cells and mobile sinks, the cells are divided into two categories: single-hop communication cells (SCCs) and multi-hop communication cells (MCCs). Mobile sinks move over two concentric diamond-shaped orbits in such a way that each half of the network is covered by a sink at a time. Initially, both sinks move in one direction and stay at particular intervals in the corners of the orbits to gather data from sensor nodes. When sinks are stationary, SCCs send data to the sinks directly, but MCCs apply the proposed routing algorithm (EGRPM) to send data to mobile sinks. The proposed approach is simulated by NS2 software. A comparison between the performance of EGRPM and conventional methods shows that applying EGRPM results in a significant decrease in average energy consumption and data delivery delay and causes a substantial increase in packet delivery rate and network lifetime. (C) 2020 Elsevier Inc. All rights reserved.
机译:无线传感器网络由大量节点组成,这些节点直接或通过中间节点将感测到的数据发送到基站或接收器。多跳通信导致流量增加,并耗尽与静态接收器相邻的节点的能量。解决这一挑战的一种方法是使用移动接收器。移动接收器平衡负载并在整个网络中分配能耗。本文提出了一种以地理方式将网络划分为某些小区的方法,并应用两个移动接收器来收集这些小区节点感测到的数据。基于小区和移动宿之间的通信,小区被分为两类:单跳通信小区(SCC)和多跳通信小区(MCC)。移动接收器在两个同心菱形轨道上移动,使得网络的每一半每次都被一个接收器覆盖。最初,两个接收器都沿一个方向移动,并以特定的间隔停留在轨道的各个角落,以从传感器节点收集数据。当接收器静止时,SCC将数据直接发送到接收器,但是MCC应用建议的路由算法(EGRPM)将数据发送到移动接收器。 NS2软件对提出的方法进行了仿真。 EGRPM与常规方法的性能之间的比较表明,应用EGRPM会导致平均能耗和数据传输延迟显着降低,并导致数据包传输速率和网络寿命显着增加。 (C)2020 Elsevier Inc.保留所有权利。

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