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A location routing protocol based on smart antennas for wireless sensor networks.

机译:用于无线传感器网络的基于智能天线的位置路由协议。

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摘要

Wireless sensor networks are an emerging technology for environmental monitoring. A typical sensor network is composed of a large number of low-cost, low-power, multi-functional miniature sensor devices (nodes) equipped with a radio transceiver and a set of transducers utilized to acquire information about the surrounding environment.;Due to the inherent characteristics and restrictions of sensor nodes, routing in WSNs is very challenging. The task of finding and maintaining routes is nontrivial since energy restrictions and sudden changes in node status (e.g. failure) cause frequent and unpredictable topological changes.;This work introduces a novel location routing protocol that uses smart antennas to estimate nodes positions into the network and to deliver information basing routing decisions on neighbour's status connection and relative position, named LBRA.;The main purpose of LBRA is to eliminate network control overhead as much as possible. To achieve this goal, the algorithm employs local position for route decision, implements a novel mechanism to collect the location information and involves only route participants in the synchronization of location information. In addition, the protocol uses node battery information to make power aware routing decisions.;One of the most important constraints of sensor nodes is the low power consumption requirement since they carry limited, generally irreplaceable, batteries. In addition, they are also characterized by scarce processing speed, storage capacity and communication bandwidth, thus requiring careful resource management.;LBRA is an enhanced version of the ZigBee routing, which is the current standard for reliable, cost-effective and low power wireless networking, and like the latter is prototyped from AODV. In order to assess to what extent LBRA truly represents an improvement with respect to the ZigBee routing, a series of simulations were designed with the help of the Network Simulator (ns). Basically, both protocols were implemented in the simulator and its performance was compared in a variety of traffic load, network size and mobility conditions.;The experiment results showed that LBRA succeed in reducing the control overhead and the routing load, improving the packet delivery rate for both static and mobile networks. Additionally, network power depletion is more balanced, since routing decisions are made depending on nodes' battery level.
机译:无线传感器网络是一种用于环境监控的新兴技术。典型的传感器网络由大量低成本,低功率,多功能的微型传感器设备(节点)组成,这些设备配有无线电收发器和一组用于获取有关周围环境信息的换能器。由于传感器节点的固有特性和限制,WSN中的路由非常具有挑战性。由于能量限制和节点状态的突然变化(例如故障)会导致频繁且不可预测的拓扑变化,因此查找和维护路由的任务并非易事。该工作引入了一种新颖的位置路由协议,该协议使用智能天线来估计节点在网络中的位置,并根据邻居的状态连接和相对位置(称为LBRA)传递基于路由决策的信息; LBRA的主要目的是尽可能消除网络控制开销。为了实现此目标,该算法采用本地位置进行路线决策,实现了一种新颖的机制来收集位置信息,并且仅使路线参与者参与位置信息的同步。此外,该协议还使用节点电池信息来制定功率感知路由决策。传感器节点最重要的约束之一是低功耗要求,因为它们携带的电池数量有限,通常是不可替代的。此外,它们还具有处理速度,存储容量和通信带宽不足的特点,因此需要仔细的资源管理。LBRA是ZigBee路由的增强版本,ZigBee路由是可靠,具有成本效益和低功率无线技术的当前标准。网络,就像后者是从AODV原型制作的。为了评估LBRA在何种程度上真正代表了ZigBee路由方面的改进,借助网络仿真器(ns)设计了一系列仿真。基本上,这两种协议都在模拟器中实现,并在各种流量负载,网络规模和移动性条件下比较了其性能。实验结果表明,LBRA成功地减少了控制开销和路由负载,提高了数据包传递率适用于静态和移动网络。此外,由于路由决策是根据节点的电池电量决定的,因此网络功率消耗更加平衡。

著录项

  • 作者

    Polo, Nelly.;

  • 作者单位

    Ecole Polytechnique, Montreal (Canada).;

  • 授予单位 Ecole Polytechnique, Montreal (Canada).;
  • 学科 Engineering Electronics and Electrical.;Computer Science.
  • 学位 M.Sc.A.
  • 年度 2010
  • 页码 103 p.
  • 总页数 103
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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