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Unified role assignment framework for wireless sensor networks.

机译:无线传感器网络的统一角色分配框架。

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摘要

Wireless sensor networks are made possible by the continuing improvements in embedded sensor, VLSI, and wireless radio technologies. Currently, one of the important challenges in sensor networks is the design of a systematic network management framework that allows localized and collaborative resource control uniformly across all application services such as sensing, monitoring, tracking, data aggregation, and routing.;The research in wireless sensor networks is currently oriented toward a cross-layer network abstraction that supports appropriate fine or course grained resource controls for energy efficiency. In that regard, we have designed a unified role-based service paradigm for wireless sensor networks. We pursue this by first developing a Role-based Hierarchical Self-Organization (RBSHO) protocol that organizes a connected dominating set (CDS) of nodes called dominators. This is done by hierarchically selecting nodes that possess cumulatively high energy, connectivity, and sensing capabilities in their local neighborhood. The RBHSO protocol then assigns specific tasks such as sensing, coordination, and routing to appropriate dominators that end up playing a certain 'role' in the network.;Roles, though abstract and implicit, expose role-specific resource controls by way of role assignment and scheduling. Based on this concept, we have designed a Unified Role-Assignment Framework (URAF) to model application services as roles played by local in-network sensor nodes with sensor capabilities used as rules for role identification. The URAF abstracts domain specific role attributes by three models: the role energy model, the role execution time model, and the role service utility model. The framework then generalizes resource management for services by providing abstractions for controlling the composition of a service in terms of roles, its assignment, reassignment, and scheduling. To the best of our knowledge, a generic role-based framework that provides a simple and unified network management solution for wireless sensor networks has not been proposed previously.;Keywords: Wireless sensor networks (WSNs), sensing metrics, roles, rules, network organization, role assignment, role scheduling, and generic control interfaces or abstractions.
机译:嵌入式传感器,VLSI和无线技术的不断改进使无线传感器网络成为可能。当前,传感器网络中的重要挑战之一是设计一种系统的网络管理框架,该框架允许在所有应用程序服务(例如传感,监视,跟踪,数据聚合和路由)中统一进行本地化和协作式资源控制。传感器网络目前面向跨层网络抽象,该抽象支持适当的精细或过程粒度资源控制以提高能效。在这方面,我们为无线传感器网络设计了一个基于角色的统一服务范例。为此,我们首先开发了基于角色的分层自组织(RBSHO)协议,该协议组织了称为支配者的节点的连接支配集合(CDS)。这是通过分层选择在其本地邻居中具有累积的高能量,连通性和传感功能的节点来完成的。然后RBHSO协议将特定的任务(例如感知,协调和路由)分配给最终在网络中扮演特定角色的适当支配者。;角色虽然是抽象的和隐式的,但通过角色分配来公开特定于角色的资源控制和调度。基于此概念,我们设计了一个统一的角色分配框架(URAF),以将应用程序服务建模为本地网络内传感器节点扮演的角色,并将传感器功能用作角色识别规则。 URAF通过三个模型来抽象域特定的角色属性:角色能量模型,角色执行时间模型和角色服务实用程序模型。然后,该框架通过提供用于根据角色,其分配,重新分配和调度来控制服务组成的抽象,来概括服务的资源管理。据我们所知,以前没有提出过一个基于角色的通用框架,该框架为无线传感器网络提供了一个简单而统一的网络管理解决方案。关键词:无线传感器网络(WSN),感知指标,角色,规则,网络组织,角色分配,角色调度以及通用控制接口或抽象。

著录项

  • 作者

    Kochhal, Manish M.;

  • 作者单位

    Wayne State University.;

  • 授予单位 Wayne State University.;
  • 学科 Engineering Computer.;Computer Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 241 p.
  • 总页数 241
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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