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Analysis of the Scalability and Stability of an ACO Based Routing Protocol for Wireless Sensor Networks

机译:用于无线传感器网络的基于ACO路由协议的可扩展性和稳定性分析

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Wireless Sensor Networks (WSNs) are often deployed in remote and hostile areas and because of their limited power and vulnerability, the sensors may stop functioning after sometime leading to the appearance of holes in a network. A hole created by the non-functioning sensors in turn severs the connection between one side and the other side of the network and alternative routes need to be found for the network traffic. Prior research tackled the holes problem only when packets reach some nodes near the hole. In this case, the feedback packets are generated and accordingly the data packets need to be rerouted to avoid the holes. The traffic overhead for rerouting consumes additional battery power and thus increases the communication cost as well as reducing the lifetime of the sensors. To deal with the dynamical changes in network topologies in an autonomous manner, ant colony optimization (ACO) algorithms have shown very good performance in routing the network traffic. In this paper, we analyze the scalability and stability of the ACO-based routing protocol BIOSARP against the issues caused by holes in WSNs. Network simulator 2 (ns-2) is utilized to perform the analysis. Findings clearly demonstrate that BIOSARP can efficiently maintain the data packet routing over a WSN prior to any possible holes problems, by switching data forwarding to the most optimal neighboring node.
机译:无线传感器网络(WSNS)通常部署在远程和敌对地区,并且由于其功率和漏洞有限,传感器可能会在通向网络中的孔的外观后停止运行。由非功能传感器创建的孔又转动一侧和网络之间的一侧和另一侧之间的连接以及需要找到网络流量的替代路线。在数据包到达孔附近的某些节点时,才会解决孔问题。在这种情况下,生成反馈分组,因此需要重新输出数据分组以避免孔。 REROUTING的交通开销消耗了额外的电池电量,从而提高了通信成本以及减少传感器的寿命。为了以自主方式处理网络拓扑的动态变化,蚁群优化(ACO)算法在路由网络流量方面表现出很好的性能。在本文中,我们分析了基于ACO的路由协议BIOSARP的可扩展性和稳定性,以反对WSNS中孔引起的问题。网络仿真器2(NS-2)用于执行分析。发现清楚地证明BioSARP通过将数据转发到最佳相邻节点的数据转发,BioSARP可以在任何可能的孔问题之前有效地维护WSN上的数据包路由。

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