基于冗余定位的普适计算环境下支持上下文感知垂直切换的主动节点

S. Balasubramaniam, T. Pfeifer, J. Indulska
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引用次数: 6

摘要

普及系统的一个主要需求是集成上下文感知,以支持异构网络和设备技术,同时支持应用程序适应用户活动。然而,普适系统的当前基础设施是基于集中式体系结构的,其重点是上下文支持,以适应计算环境或用户移动性的变化。在本文中,我们提出了一种基于活动节点的分层架构,在普适计算环境中最大化各节点的计算能力,同时有效地收集和评估来自用户工作环境的上下文信息。可迁移活动节点体系结构采用各种决策制定流程来评估丰富的上下文信息集,以便在工作环境中动态分配活动节点、执行应用程序调整和预测用户移动性。主节点还利用冗余定位系统来精确管理用户的移动。本文通过上下文感知的垂直切换应用程序演示了活动节点的功能。
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Active Node supporting Context-aware Vertical Handover in Pervasive Computing Environment with Redundant Positioning
A major requirement for pervasive systems is to integrate context-awareness to support heterogeneous networks and device technologies and at the same time support application adaptations to suit user activities. However, current infrastructures for pervasive systems are based on centralized architectures which are focused on context support for service adaptations in response to changes in the computing environment or user mobility. In this paper, we propose a hierarchical architecture based on active nodes, which maximizes the computational capabilities of various nodes within the pervasive computing environment, while efficiently gathering and evaluating context information from the user's working environment. The migratable active node architecture employs various decision making processes for evaluating a rich set of context information in order to dynamically allocate active nodes in the working environment, perform application adaptations and predict user mobility. The active node also utilizes the Redundant Positioning System to accurately manage user's mobility. This paper demonstrates the active node capabilities through context-aware vertical handover applications.
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