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Protocols for energy efficient and QoS aware communication in cluster-based wireless sensor networks.

机译:基于群集的无线传感器网络中的节能和QoS感知通信协议。

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摘要

Wireless sensor networks (WSNs) pose an enormous potential in providing diverse services to a broad range of applications including security, health care, environment, energy, military, and infrastructure monitoring by allowing intelligent monitoring of the physical environments. Such capabilities make WSNs immensely useful for data collection, analysis and possible actions. The pragmatic realization of WSN applications depends on many challenges such as energy efficient operation and support for application-specific QoS. Inspired by these challenges, this dissertation investigates techniques for energy conservation and QoS support in cluster-based WSNs. In this regard, four main contributions are made towards designing such techniques.;Firstly, a novel energy efficient cluster formation scheme is designed that uses a multi-criterion optimization technique. The novelty of this technique lies in employing multiple individual metrics for cluster formation that are critical for balanced energy dissipation of the system. By using multiple parameters that are of global and local significance, a fine control is achieved on the energy consumption behaviour of sensor nodes. In addition, the technique relies on simple design that allows sensor nodes to form clusters using local decisions only. Moreover, the decisions made by sensor nodes are based on information that is easily collected by only listening to the CH advertisement messages. Extensive simulations are performed to evaluate the performance of the proposed technique. Simulation results demonstrate that the proposed method achieves significant energy savings as compared to other popular protocols and significantly extends the network lifetime.;Secondly, at the MAC level an adaptive reservation-based protocol is designed that allows flexible assignment of bandwidth to the sensor nodes based on application demands. The reservation is achieved by maintaining a priority index for each application level. Nodes use the application priority index to request resources in the next scheduled access period. The cluster head uses the requests to generate the transmission schedule. The interactions from higher to lower layers are used to exploit application-specific characteristics of sensor networks while simultaneously maintaining energy efficiency.;Thirdly, a simple three-tier architecture is introduced that allows further energy savings by employing relay nodes. Relay nodes act as forwarding agents to transport the data collected by the cluster heads. Two novel algorithms are designed for selection of relay nodes thus providing a viable and energy efficient topology for cluster-based WSNs. Benefits in terms of energy gains and network lifetime are demonstrated by simulation results.;Finally, an analytical model of the reservation-based MAC protocol is developed using Network Calculus. Empirical relationships are derived to estimate the worst-case bounds for backlog and delay. The model is extended to include data with different priorities.
机译:通过允许对物理环境进行智能监控,无线传感器网络(WSN)在为包括安全性,医疗保健,环境,能源,军事和基础设施监控在内的各种应用程序提供多样化服务方面具有巨大的潜力。此类功能使WSN对于数据收集,分析和可能采取的行动极为有用。 WSN应用程序的务实实现取决于许多挑战,例如节能运行和对特定于应用程序的QoS的支持。受这些挑战的启发,本文研究了基于集群的无线传感器网络中的节能和QoS支持技术。在这方面,对设计此类技术做出了四个主要贡献。首先,设计了一种使用多准则优化技术的新型节能集群形成方案。该技术的新颖之处在于采用多个单独的指标进行集群形成,这对于平衡系统的能量耗散至关重要。通过使用具有全局和局部重要性的多个参数,可以对传感器节点的能耗行为进行精细控制。另外,该技术依赖于简单的设计,该设计允许传感器节点仅使用局部决策来形成群集。而且,传感器节点做出的决定基于仅通过收听CH广告消息即可轻松收集的信息。进行广泛的仿真以评估所提出技术的性能。仿真结果表明,与其他流行的协议相比,该方法可节省大量能源,并显着延长了网络寿命。其次,在MAC级别上,设计了一种基于自适应预留的协议,该协议允许将带宽灵活分配给基于传感器的节点。根据应用需求。通过为每个应用程序级别维护优先级索引来实现保留。节点使用应用程序优先级索引在下一个计划的访问周期内请求资源。群集头使用请求来生成传输调度。从较高层到较低层的交互被用来利用传感器网络的特定于应用程序的特性,同时保持能源效率。第三,引入了一个简单的三层体系结构,该体系结构通过使用中继节点可以进一步节省能源。中继节点充当转发代理,以传输群集头收集的数据。设计了两种新颖的算法来选择中继节点,从而为基于集群的WSN提供可行且节能的拓扑。仿真结果证明了在能量获取和网络寿命方面的好处。最后,使用网络演算技术开发了基于预留的MAC协议的分析模型。得出经验关系以估计积压和延迟的最坏情况界限。该模型被扩展为包括具有不同优先级的数据。

著录项

  • 作者

    Aslam, Nauman.;

  • 作者单位

    Dalhousie University (Canada).;

  • 授予单位 Dalhousie University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

  • 入库时间 2022-08-17 11:39:05

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