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Congestion control in wireless sensor networks based on bird flocking behavior

机译:基于鸟群行为的无线传感器网络拥塞控制

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This paper proposes that the flocking behavior of birds can guide the design of a robust, scalable and self-adaptive congestion control protocol in the context of wireless sensor networks (WSNs). The proposed approach adopts a swarm intelligence paradigm inspired by the collective behavior of bird flocks. The main idea is to 'guide' packets (birds) to form flocks and flow towards the sink (global attractor), whilst trying to avoid congestion regions (obstacles). The direction of motion of a packet flock is influenced by repulsion and attraction forces between packets, as well as the field of view and the artificial magnetic field in the direction of the artificial magnetic pole (sink). The proposed approach is simple to implement at the individual node, involving minimal information exchange. In addition, it displays global self-* properties and emergent behavior, achieved collectively without explicitly programming these properties into individual packets. Performance evaluations show the effectiveness of the proposed Flock-based Congestion Control (Flock-CC) mechanism in dynamically balancing the offered load by effectively exploiting available network resources and moving packets to the sink. Furthermore, Flock-CC provides graceful performance degradation in terms of packet delivery ratio, packet loss, delay and energy tax under low, high and extreme traffic loads. In addition, the proposed approach achieves robustness against failing nodes, scalability in different network sizes and outperforms typical conventional approaches.
机译:本文提出,在无线传感器网络(WSN)的背景下,鸟类的蜂群行为可以指导鲁棒,可扩展和自适应的拥塞控制协议的设计。所提出的方法采用了一群受鸟群集体行为启发的情报智能范式。主要思想是“引导”小包(鸟)形成鸡群并流向水槽(整体吸引器),同时尝试避开拥塞区域(障碍物)。烟包群的运动方向受烟包之间的排斥力和吸引力以及视场和人造磁极(汇)方向上的人造磁场的影响。所提出的方法在单个节点上易于实现,涉及最少的信息交换。此外,它还显示了全局的self- *属性和紧急行为,这些是集体实现的,而无需将这些属性明确编程为单独的数据包。性能评估表明,通过有效利用可用网络资源并将数据包移至接收器,所提出的基于群的拥塞控制(Flock-CC)机制在动态平衡所提供的负载方面是有效的。此外,Flock-CC在低,高和极端流量负载下,在数据包传输率,数据包丢失,延迟和能源税方面,都会造成性能下降。另外,所提出的方法实现了针对故障节点的鲁棒性,在不同网络规模下的可扩展性,并且优于典型的常规方法。

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