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首页> 外文期刊>International journal of grid and high performance computing >Effective Integration of Reliable Routing Mechanism and Energy Efficient Node Placement Technique for Low Power IoT Networks
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Effective Integration of Reliable Routing Mechanism and Energy Efficient Node Placement Technique for Low Power IoT Networks

机译:低功耗IoT网络的可靠路由机制和节能节点放置技术的有效集成

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摘要

Internet of Things (IoT) is the emerging technology that links physical devices (sensor devices) with cyber systems and allows global sharing of information. In IoT applications, devices are operated by battery power and low power radio links, which are constrained by energy. In this paper, node placement technique and routing mechanism are effectively integrated in single network architecture to prolong the lifetime of IoT network. In proposed network architecture, sensor node and relay node are deployed, sensor nodes are responsible for collecting the environmental data and relay nodes are responsible for data aggregation and path computation. In node placement technique, densities of relay nodes are varied based on traffic area, to prevent energy hole problem. In routing technique, energy efficient and reliable path computation is done to reduce number of re transmissions. To adopt IoT scenario, we included IEEE 802.15.4 PHY/MAC radio and IPv6 packet structure in proposed network architecture. Proposed work result shows, proposed architecture prolongs network lifetime.
机译:物联网(IoT)是将物理设备(传感器设备)与网络系统链接在一起并允许全球信息共享的新兴技术。在物联网应用中,设备由电池和低功率无线电链路操作,这些链路受能源的约束。本文将节点放置技术和路由机制有效地集成在单个网络架构中,以延长IoT网络的寿命。在提出的网络架构中,部署了传感器节点和中继节点,传感器节点负责收集环境数据,中继节点负责数据聚合和路径计算。在节点布置技术中,中继节点的密度根据业务区域而变化,以防止能量孔问题。在路由技术中,进行了节能高效且可靠的路径计算,以减少重新传输的次数。为了采用物联网场景,我们在提议的网络体系结构中包括了IEEE 802.15.4 PHY / MAC无线电和IPv6数据包结构。拟议的工作结果表明,拟议的架构可延长网络寿命。

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