首页> 外文期刊>Journal of computer sciences >Energy-Efficient Ant Colony-Based k-Hop Clustering and Transmission Range Assignment Protocol for Connectivity Construction in Dense Wireless Sensor Networks
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Energy-Efficient Ant Colony-Based k-Hop Clustering and Transmission Range Assignment Protocol for Connectivity Construction in Dense Wireless Sensor Networks

机译:基于节能蚁群的k-Hop聚类和传输距离分配协议,用于密集无线传感器网络中的连通性构建

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Connectivity construction is the main phase of a communication-oriented topology control process. It consists of improving the current network physical topology while preserving important properties such as connectivity and symmetry. In this paper, we address the problem of combining two of the techniques commonly used for this purpose in networks composed of a large number of energy constrained wireless sensor-nodes namely, clustering and power control. We propose an ant colony-based asynchronous and localized protocol that helps to significantly reduce energy losses by simultaneously eliminating redundant and poor quality links, always keeping the Cluster Head-to-member distance up to k-hops (k≥1) and minimizing signalization. Simulation results show that our protocol outperforms some state-of-the-art solutions in terms of Quality of the Topology (QoT) and network lifetime prolongation.
机译:连接性构建是面向通信的拓扑控制过程的主要阶段。它包括改善当前的网络物理拓扑结构,同时保留重要的属性,如连接性和对称性。在本文中,我们解决了将由大量能量受限的无线传感器节点组成的网络中通常用于此目的的两种技术结合在一起的问题,即群集和功率控制。我们提出了一种基于蚁群的异步和本地化协议,该协议可通过同时消除冗余和质量较差的链接,始终将群集头到成员的距离保持到k跳(k≥1)并将信号信号最小化,来帮助显着减少能量损失。仿真结果表明,在拓扑质量(QoT)和网络寿命延长方面,我们的协议优于某些最新解决方案。

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