LMH-RPL: a load balancing and mobility aware secure hybrid routing protocol for low power lossy network

IF 0.6 Q4 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
R. Cyriac, Saleem Durai M.A.
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引用次数: 0

Abstract

Purpose Routing protocol for low-power lossy network (RPL) being the de facto routing protocol used by low power lossy networks needs to provide adequate routing service to mobile nodes (MNs) in the network. As RPL is designed to work under constraint power requirements, its route updating frequency is not sufficient for MNs in the network. The purpose of this study is to ensure that MNs enjoy seamless connection throughout the network with minimal handover delay. Design/methodology/approach This study proposes a load balancing mobility aware secure hybrid – RPL in which static node (SN) identifies route using metrics like expected transmission count, and path delay and parent selection are further refined by working on remaining energy for identifying the primary route and queue availability for secondary route maintenance. MNs identify route with the help of smart timers and by using received signal strength indicator sampling of parent and neighbor nodes. In this work, MNs are also secured against rank attack in RPL. Findings This model produces favorable result in terms of packet delivery ratio, delay, energy consumption and number of living nodes in the network when compared with different RPL protocols with mobility support. The proposed model reduces packet retransmission in the network by a large margin by providing load balancing to SNs and seamless connection to MNs. Originality/value In this work, a novel algorithm was developed to provide seamless handover for MNs in network. Suitable technique was developed to provide load balancing to SNs in network by maintaining appropriate secondary route.
LMH-RPL:用于低功耗网络的负载平衡和移动性感知的安全混合路由协议
目的低功耗损耗网络路由协议(RPL)是低功耗损耗网络实际使用的路由协议,需要为网络中的移动节点(MNs)提供足够的路由服务。由于RPL被设计为在受限的功率要求下工作,它的路由更新频率对于网络中的MNs来说是不够的。本研究的目的是确保无线网络在整个网络中以最小的切换延迟享受无缝连接。设计/方法/方法本研究提出了一种负载平衡移动感知安全混合RPL,其中静态节点(SN)使用预期传输计数等指标来识别路由,路径延迟和父节点选择通过剩余能量来识别主路由和用于次要路由维护的队列可用性来进一步改进。MNs利用智能定时器和接收到的信号强度指标采样父节点和邻居节点来识别路由。在这项工作中,MNs也可以防止RPL中的秩攻击。结果与不同的支持移动的RPL协议相比,该模型在分组分发率、时延、能耗和网络活节点数等方面都取得了较好的效果。该模型通过向网络节点提供负载均衡和向网络节点提供无缝连接,大大减少了网络中的数据包重传。本文提出了一种新颖的算法来实现网络中mnns的无缝切换。提出了一种适当的技术,通过保持适当的辅助路由来实现网络中SNs的负载均衡。
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来源期刊
International Journal of Pervasive Computing and Communications
International Journal of Pervasive Computing and Communications COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS-
CiteScore
6.60
自引率
0.00%
发文量
54
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