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Energy efficient rendezvous points based routing technique using multiple mobile sink in heterogeneous wireless sensor networks

机译:基于节能的Rendezvous点在异构无线传感器网络中使用多移动宿的路由技术

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In recent decades, Sensor nodes (SNs) are used in numerous uses of heterogeneous wireless sensor networks (HWSNs) to obtain a variety of sensing data sources. Sink mobility shows a significant part in the enhancement of sensor system execution, energy utilization, and lifetime. To manage sink mobility, rendezvous points (RPs) are introduced where some SNs are chosen as RPs, and the non-RP nodes convey the information to the cluster heads (CHs). The CHs then forward their information to the nearby RPs. To determine the set of RPs and travelling path of mobile sinks (MSs) that visits these RPs is quite challenging. This work presents an energy-efficient SOSS based routing method that depends on RPs and multiple MSs in HWSNs. At first, all the heterogeneous nodes are distributed into the number of clusters using mean shift clustering (MSC). Then, the Bald eagle search (BES) algorithm is used for an optimal selection of CHs whereas multiple MS is employed for effective data gathering. The use of multiple MSs can enhance the data collection efficiency and decreases the energy utilization for HWSNs. Finally, the hybrid seagull optimization and salp swarm (SOSS) algorithm is used to find the RPs and travelling routes of MS. The entire simulation work of the heterogeneous network is simulated in the NS2 platform. The simulation outcomes display that the suggested method provides superior performance in HWSN than other current routing protocols.
机译:近几十年来,传感器节点(SNS)用于异构无线传感器网络(HWSNS)的许多用途,以获得各种感测数据源。水槽移动性在增强传感器系统执行,能量利用率和寿命方面具有重要部分。为了管理汇总移动性,介绍了一些SNS作为RPS选择的Rendezvous点(RPS),并且非RP节点将信息传送到群集头(CHS)。然后CHS将其信息转发到附近的RPS。为了确定访问这些RPS的移动宿地(MSS)的RP和行驶路径集是非常具有挑战性的。这项工作介绍了一种基于节能的SOSS路由方法,取决于RPS和HWSN中的多个MS。首先,所有异构节点都分布到使用平均移位聚类(MSC)的簇数。然后,BALD Eagle Search(BES)算法用于最佳选择CHS,而多个MS被采用有效数据收集。多MSS的使用可以增强数据收集效率,并降低HWSN的能量利用率。最后,混合海鸥优化和SALP群(SOSS)算法用于找到MS的RPS和行驶路线。在NS2平台中模拟异构网络的整个仿真工作。仿真结果显示,建议的方法在HWSN中提供的性能优于其他当前路由协议。

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