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HEER - A delay-aware and energy-efficient routing protocol for wireless sensor networks

机译:HEER-用于无线传感器网络的延迟感知和节能路由协议

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摘要

Minimizing energy consumption to maximize network lifetime is one of the crucial concerns in designing wireless sensor network routing protocols. Cluster-based protocols have shown promising energy efficiency performance, where sensor nodes take turns to act as cluster heads (CHs), which carry out higher-level data routing and relaying. In such case the energy consumption is more evenly distributed for all the nodes. However, most cluster-based protocols improve energy-efficiency at the cost of transmission delay. In this paper, we propose an improved delay-aware and energy-efficient clustered protocol called Hamilton Energy-Efficient Routing Protocol (HEER). HEER forms clusters in the network initialization phase and links members in each cluster on a Hamilton Path, constructed using a greedy algorithm, for data transmission purpose. No cluster reformation is required and the members on the path will take turns to become cluster head. The design allows HEER to save on network administration energy and also balance the load comparing to traditional cluster-based protocols. The algorithms designed in HEER also means that it does not suffer long delay and does not require each node to have global location information comparing with classic chain-based protocols such as PEGASIS and its variations. We implemented the HEER protocol in MATLAB simulation and compared it with several cluster-based and chain-based protocols. We found that HEER is able to achieve an improved network lifetime over the current protocols while maintaining the average data transmission delay. In the simulation, HEER achieved 66.5% and 40.6% more rounds than LEACH and LEACH-EE, which are cluster-based protocols. When compared with chain-based protocols (PEGASIS and Intra-grid-PEGSIS), HEER managed 21.2 times and 16.7 times more rounds than PEGASIS and Intra-grid-PEGASIS respectively. In addition, HEER can eliminated 90% of transmission delay comparing to LEACH and LEACH-EE and 99% comparing with PEGASIS and Intra-grid-PEGASIS. (C) 2016 Elsevier B.V. All rights reserved.
机译:最小化能耗以最大化网络寿命是设计无线传感器网络路由协议的关键问题之一。基于群集的协议已显示出令人鼓舞的能效性能,其中传感器节点轮流充当群集头(CH),它们执行更高级别的数据路由和中继。在这种情况下,能耗在所有节点上分布更均匀。但是,大多数基于群集的协议都以传输延迟为代价提高了能效。在本文中,我们提出了一种改进的延迟感知和节能集群协议,称为汉密尔顿节能路由协议(HEER)。 HEER在网络初始化阶段形成群集,并在汉密尔顿路径上链接每个群集中的成员,该路径使用贪婪算法构建,用于数据传输。无需进行群集重组,路径上的成员将轮流成为群集头。与传统的基于群集的协议相比,该设计使HEER可以节省网络管理能量,并平衡负载。与经典的基于链的协议(例如PEGASIS及其变体)相比,HEER中设计的算法还意味着它不会遭受长时间的延迟,并且不需要每个节点都具有全局位置信息。我们在MATLAB仿真中实现了HEER协议,并将其与几种基于集群和基于链的协议进行了比较。我们发现,HEER能够在当前协议的基础上提高网络寿命,同时保持平均数据传输延迟。在仿真中,HEER比基于集群的协议LEACH和LEACH-EE获得了66.5%和40.6%的回合。与基于链的协议(PEGASIS和Intra-grid-PEGSIS)相比,HEER的轮次分别比PEGASIS和Intra-grid-PEGASIS高21.2倍和16.7倍。此外,相比于LEACH和LEACH-EE,HEER可以消除90%的传输延迟,而与PEGASIS和Intra-grid-PEGASIS相比,HEER可以消除99%的传输延迟。 (C)2016 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Computer networks》 |2016年第20期|155-173|共19页
  • 作者

    Yi D.; Yang H.;

  • 作者单位

    Univ Loughborough, Dept Comp Sci, Loughborough LE11 3TU, Leics, England;

    Univ Loughborough, Dept Comp Sci, Loughborough LE11 3TU, Leics, England;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Routing; WSNs; Hamilton path; Clustering;

    机译:路由;WSN;汉密尔顿路径;聚类;

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