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UTILIZING PRIORITY-BASED QUEEN BEE ALGORITHM FOR POWER CONSERVATION IN WIRELESS SENSOR NETWORKS

机译:利用基于优先级的女王Bee算法在无线传感器网络中的节电算法

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摘要

Wireless Sensor Networks form small nodes that calculate and communicate with each other. In such networks, fault tolerance and security must be improved. In addition, maintaining node energy is one of the most important problems in node operation. Since Wireless Sensor Networks have energy constraints, power conservation in these networks is very important and faces challenges. The aim of this study is to study the challenges and factors affecting node failure as well as the techniques and challenges related to power conservation. Since this study describes and introduces the performance of Wireless Sensor Networks by including features, dimensions, and relevant constraints, an appropriate algorithm for power conservation in Wireless Sensor Networks is attempted. Therefore, power conservation techniques were studied in this paper to increase the fault tolerance of these network types and the performance of each method is separately described in different energy degradation conditions by providing a comparative table. The solution presented is a combination of priority-based methods and the Queen Bee algorithm and is introduced and analyzed to create energy-efficient clusters in Wireless Sensor Networks. Therefore, the "Queen Bee Algorithm based on priority" (PQBA) is presented to improve power conservation and achieve the desired energy consumption. The simulation results in the CupCarbon simulator showed that more active points in the Wireless Sensor Network lead to more clusters that reduce energy consumption by increasing the number of clusters and thus increase network lifetime.
机译:无线传感器网络形成计算和互相通信的小节点。在这种网络中,必须提高容错和安全性。此外,维护节点能量是节点操作中最重要的问题之一。由于无线传感器网络具有能量限制,因此这些网络中的功率节约非常重要,并且面临挑战。本研究的目的是研究影响节点故障的挑战和因素以及与节能相关的技术和挑战。由于该研究通过包括特征,尺寸和相关约束来描述和介绍无线传感器网络的性能,因此尝试了一种适当的用于无线传感器网络的节能算法。因此,在本文中研究了节能技术以增加这些网络类型的容错,并且通过提供比较表,在不同的能量劣化条件下分别描述各种方法的性能。呈现的解决方案是基于优先级的方法和女王蜜蜂算法的组合,并被介绍并分析以在无线传感器网络中创建节能簇。因此,提出了“基于优先级”(PQBA)的“女王Bee算法”以改善功率节约并实现所需的能量消耗。 Cupcarbon Simulator中的仿真结果表明,无线传感器网络中的更多有效点导致更多的集群,从而提高群集数量,从而增加网络寿命。

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