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A Hybrid Algorithm for Optimal Wireless Sensor Network Deployment with the Minimum Number of Sensor Nodes

机译:传感器节点数量最少的无线传感器网络优化部署的混合算法

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Wireless sensor network (WSN) applications are rapidly growing and are widely used in various disciplines. Deployment is one of the key issues to be solved in WSNs, since the sensor nodes’ positioning affects highly the system performance. An optimal WSN deployment should maximize the collection of the desired interest phenomena, guarantee the required coverage and connectivity, extend the network lifetime, and minimize the network cost in terms of energy consumption. Most of the research effort in this area aims to solve the deployment issue, without minimizing the network cost by reducing unnecessary working nodes in the network. In this paper, we propose a deployment approach based on the gradient method and the Simulated Annealing algorithm to solve the sensor deployment problem with the minimum number of sensor nodes. The proposed algorithm is able to heuristically optimize the number of sensors and their positions in order to achieve the desired application requirements.
机译:无线传感器网络(WSN)应用正在迅速增长,并广泛用于各个领域。部署是WSN中要解决的关键问题之一,因为传感器节点的位置在很大程度上影响系统性能。最佳的WSN部署应最大程度地收集所需的兴趣现象,保证所需的覆盖范围和连接性,延长网络寿命,并就能耗降低网络成本。该领域的大多数研究工作旨在解决部署问题,而不通过减少网络中不必要的工作节点来最大程度地降低网络成本。在本文中,我们提出了一种基于梯度方法和模拟退火算法的部署方法,以解决传感器节点数量最少的传感器部署问题。所提出的算法能够启发式地优化传感器的数量及其位置,以实现所需的应用需求。

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