Efficient Load Balancing in WSN Using Quasi – oppositional Based Jaya Optimization with Cluster Head Selection

Q1 Mathematics
M. S. Muthukkumar, S. Diwakaran
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引用次数: 0

Abstract

Researchers have been paying close attention to the wireless sensor (WSN) networks area because of its variety of applications, including industrial management, human detection, and health care management. In Wireless Sensor (WSN) Network, consumption of efficient energy is a challenging problem. Many clustering techniques were used for balancing the load of WSN network. In clustering, the cluster head (CH) is selected as a relay node with greater power which is compared with the nodes of non-CH. In the existing system, it uses LBC-COFL algorithm to reduce the energy consumption problem. To overcome this problem, the proposed system uses Quasi oppositional based Jaya load balancing strategy with cluster head (QOJ-LCH) selection protocol to boost the lifespan of network and energy consumption. The QOJ-LCH method improves the relay nodes life and shares the load on relay nodes equitably across the network to enhance the lifespan. It also reduces the load-balancing problems in Wireless Sensor networks. It uses two routing methods single-hop and multiple-hop. The proposed QOJ-LCH with cluster head selection method enhances the network’s lifespan, total amount of power utilization and the active sensor devices present in the Single-hop routing,it worked with 1600 rounds in network and 300 sensor nodes, for Multiple-hop routing, it worked with 1800 rounds in network and 350 sensor nodes. It achieves better performance, scalability and reliability.
基于簇头选择的拟反向Jaya优化在无线传感器网络中的有效负载平衡
无线传感器(WSN)网络领域的应用非常广泛,包括工业管理、人体检测和医疗保健管理,因此研究人员一直在密切关注它。在无线传感器网络中,有效能量的消耗是一个具有挑战性的问题。许多集群技术被用来平衡无线传感器网络的负载。在集群中,簇头(CH)被选择为与非CH的节点相比具有更大功率的中继节点。在现有的系统中,它使用LBC-COFL算法来减少能耗问题。为了克服这个问题,所提出的系统使用基于准对立的Jaya负载平衡策略和簇头(QOJ-LCH)选择协议来提高网络寿命和能耗。QOJ-LCH方法提高了中继节点的寿命,并在整个网络中公平地分担中继节点上的负载,以提高寿命。它还减少了无线传感器网络中的负载平衡问题。它使用单跳和多跳两种路由方法。所提出的具有簇头选择方法的QOJ-LCH提高了网络的寿命、总功率利用率和存在于单跳路由中的有源传感器设备,它在网络中工作了1600个轮次和300个传感器节点,在多跳路由中,它在网络中工作了1800个轮次,和350个传感器节点。它实现了更好的性能、可扩展性和可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.10
自引率
0.00%
发文量
33
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