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Rover-II: A context-aware middleware for pervasive computing environments.

机译:Rover-II:用于普适计算环境的上下文感知中间件。

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摘要

It is well recognized that context plays a significant role in all human endeavors. All decisions are based on information which has to be interpreted in context. By making information systems context-aware we can have systems that significantly enhance human capabilities to make critical decisions.;A major challenge of context-aware systems is to balance usability with generality and extensibility. The relevant context changes depending on the particular application. The model used to represent the context and its relationship to entities must be general enough to allow additions of context categories without redesign while remaining usable across many applications. Also, while efforts are put in by application designers and developers to make applications context-aware, these efforts are customized to specific needs of the target application, and only certain common contexts like location and time are taken into account. Therefore, a general framework is called for that can (i) efficiently maintain, represent and integrate contextual information, (ii) act as an integration platform where different applications can share contexts and (iii) provide relevant services to make efficient use of the contextual information. This dissertation presents: • a generic and effective context model - Rover Context Model ( RoCoM) that is structured around four primitives: entities, events, relationships, and activities; and practically usable through the concept of templates, • a flexible, extensible and generic ontology - Rover Context Model Ontology (RoCoMO) supporting the model, that addresses the shortcomings of existing ontologies, • an effective mechanism of modeling the context of a situation, through the concept of relevant context, with the help of situation graph, efficiently handling and making best use of context information, • a context middleware - Rover-II, which serves as a framework for contextual information integration, that could be used not just to store and compile the contextual information, but also integrate relevant services to enhance the context information; and more importantly, enable sharing of context among the applications subscribed to it, • the initial design and implementation of a distributed architecture for Rover-II, following a P2P arrangement inspired from Tapestry.;The above concepts are illustrated through M-Urgency, a context-aware public safety system that has been deployed at the University of Maryland Police Department.
机译:众所周知,背景在所有人类努力中都起着重要作用。所有决定均基于必须在上下文中解释的信息。通过使信息系统具有上下文感知能力,我们可以拥有可以显着增强人类做出关键决策能力的系统。上下文感知系统的主要挑战是在可用性与通用性和可扩展性之间取得平衡。相关上下文根据特定应用程序而变化。用于表示上下文及其与实体的关系的模型必须足够通用,以允许添加上下文类别而无需重新设计,同时仍可在许多应用程序中使用。同样,尽管应用程序设计人员和开发人员付出了很多努力使应用程序能够感知上下文,但是这些努力是针对目标应用程序的特定需求而定制的,并且仅考虑某些通用上下文,例如位置和时间。因此,需要一个通用框架,该框架可以(i)有效地维护,表示和集成上下文信息,(ii)充当一个集成平台,不同的应用程序可以共享上下文,并且(iii)提供相关服务以有效利用上下文信息。本文提出:•通用有效的上下文模型-漫游者上下文模型(RoCoM),它围绕四个原语构建:实体,事件,关系和活动;并且可以通过模板的概念实际使用;•灵活,可扩展的通用本体-支持该模型的流动站上下文模型本体(RoCoMO),解决了现有本体的缺点;•通过以下方式对情况上下文进行建模的有效机制:相关情境的概念,借助情境图,有效地处理和充分利用了情境信息;•情境中间件-Rover-II,它用作情境信息集成的框架,不仅可以用于存储并汇编上下文信息,还集成相关服务以增强上下文信息;更重要的是,允许在订阅它的应用程序之间共享上下文;•按照Tapestry的P2P安排,为Rover-II进行分布式体系结构的初始设计和实现。通过M-Urgency,上下文感知的公共安全系统已在马里兰大学警察局部署。

著录项

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Computer science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 192 p.
  • 总页数 192
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:13

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