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TIEGeR: An Energy-Efficient Multi-Parameter Geographic Routing Algorithm.

机译:TIEGeR:一种节能多参数地理路由算法。

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摘要

Geographic routing algorithms conventionally use one-hop greedy forwarding as their primary routing technique, which might lead to routing voids. Secondary routing schemes used to circumnavigate such routing voids are unfortunately not efficient in terms of throughput and energy consumption. Moreover, node residual energy and link quality are not considered during the routing process. This thesis presents a Two-hop Information based Energy-efficient Geographic Routing (TIEGeR) scheme to achieve effective energy balancing throughout the network, while preventing routing voids by proactively avoiding "local maxima" nodes. Distance to reach destination, node connectivity, link quality, and node residual energy are employed to formulate the routing metric for the TIEGeR. Besides, secondary routing scheme dealing with routing voids is supplemented by the reverse progress mode. The proposed TIEGeR algorithm is implemented and evaluated in an IEEE 802.15.4 environment using both simulation based on NS-2 and experimental testbed based on TI CC2530ZDK nodes. Simulations are used to investigate the performance of TIEGeR in large-scale network topologies. By experiment, we further evaluate and demonstrate the real-life operation and performance advantages of the TIEGeR scheme implemented in the network layer of a WSN using IEEE 802.15.4 MAC/PHY layers. Simulation and experimental results verify the advantages of TIEGeR against conventional geographic routing schemes.
机译:地理路由算法通常使用单跳贪婪转发作为其主要路由技术,这可能会导致路由无效。不幸的是,用于解决此类路由空洞的辅助路由方案在吞吐量和能耗方面均不高效。此外,在路由过程中不考虑节点剩余能量和链路质量。本文提出了一种基于两跳信息的节能地理路由(TIEGeR)方案,可在整个网络中实现有效的能量平衡,同时通过主动避免“局部最大值”节点来防止路由无效。采用到达目的地的距离,节点连接性,链路质量和节点剩余能量来制定TIEGeR的路由度量。此外,通过反向进度模式补充了处理路由空缺的辅助路由方案。提出的TIEGeR算法是在IEEE 802.15.4环境中使用基于NS-2的仿真和基于TI CC2530ZDK节点的实验测试台来实现和评估的。仿真用于研究TIEGeR在大规模网络拓扑中的性能。通过实验,我们进一步评估和演示了使用IEEE 802.15.4 MAC / PHY层在WSN的网络层中实现的TIEGeR方案的实际操作和性能优势。仿真和实验结果证明了TIEGeR相对于常规地理路由方案的优势。

著录项

  • 作者

    Singh, Ishaan Bir.;

  • 作者单位

    McGill University (Canada).;

  • 授予单位 McGill University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.Eng.
  • 年度 2012
  • 页码 95 p.
  • 总页数 95
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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