基于认知无线电的无线传感器网络自组织路由算法

A. Thakare, L. Bhagat, A. Thomas
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引用次数: 3

摘要

无线传感器网络区域集合了大量无人值守的传感器节点。传感器节点在区域内动态部署。在无线传感器网络中,未授权的传感器节点使用其在电信网络中暂时可用的空闲授权信道或频谱带。自组织的自适应、容错、协同频谱感知和共享的网络可扩展性等诸多开放性挑战为无线传感器网络带来了新的挑战。本文提出了一种基于生物启发的认知无线传感器网络自适应路由算法。利用蚂蚁和蜜蜂的觅食方法来决定在多跳通信中使用可用频谱感知和共享信道,为无线传感器网络中利用空闲信道和降低通信延迟提供了方法。在本文中,我们设计了一种算法来解决无线传感器网络的问题,并对经典路由协议LEACH和认知无线电传感器网络(CRSN)的性能进行了评估,以证明自组织路由算法。
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A self-organised routing algorithm for cognitive radio-based wireless sensor networks using biologically-inspired method
Wireless sensor networks area collection of a large number of unattended sensor nodes. The sensor nodes are dynamically deployed in the region. In wireless sensor networks, the unlicensed sensor nodes use their temporarily available vacant licensed channels or spectrum band in a telecommunication network. The many open challenges with issues such as adaptive in self-organisation, fault-tolerance and network scalability with cooperative spectrum sensing and sharing are identifying new challenges in wireless sensor networks. In this paper, we proposed the bio-inspired adaptive routing algorithm for cognitive radio wireless sensor networks. The utilisation of the foraging approach of ANTs and BEEs for making the decision of using the available spectrum sensing and sharing of channels over multi-hops communication, provides the method to utilise idle channel and decrease the delay for communication in wireless sensor network. In this paper, we design the algorithm to solve the issue of wireless sensor network and performance of classical routing protocol LEACH and cognitive radio sensor networks (CRSN) evaluates the parameters which proof the self-organisation routing algorithm.
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