ISAM: a Software Architecture for Pervasive Computing

A. Yamin, J. Barbosa, Iara Augustin, C. Geyer
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引用次数: 4

Abstract

The Mobile Computing is a vision of future that promises to modify the way people work and interact today. It has emerged as a new field, distinct from conventional distributed computing by its focus on mobility and its consequence. The physical and logical mobility allows the creation of applications with news requirements: built-in mobility, adaptability and flexibility. So, software production for this global mobility is complex. Challenges include designing applications which service levels and available resources are unpredictable, and the behavior is variable in time and space. To provide a system architecture that simplifies the task of implementing the mobile applications with adaptive behavior is the objective of the ongoing ISAM Project. In order to achieve its goal, ISAM uses as strategies: (a) integrated environment that provides a programming paradigm and its execution environment; (b) uniform treatment of adaptation through multilevel collaborative model, in which both the system and the application contribute for that. The scheduling process – the core of ISAM architecture, manages this collaboration. Introducing HoloLanguage abstractions that express adaptability makes the control of adaptation by part of application. So, adaptation is not fully transparent to applications. In this paper, we present the main decisions used for designing the ISAM Architecture. We also introduce a first taxonomy for mobile applications with adaptive behavior.
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ISAM:普适计算的软件架构
移动计算是对未来的展望,它有望改变人们今天工作和互动的方式。它已经成为一个新的领域,有别于传统的分布式计算,因为它关注移动性及其后果。物理和逻辑的移动性允许创建具有新需求的应用程序:内置移动性、适应性和灵活性。因此,针对这种全球流动性的软件生产是复杂的。挑战包括设计服务水平和可用资源不可预测、行为随时间和空间变化的应用程序。提供一个系统架构,简化实现具有自适应行为的移动应用程序的任务,是正在进行的ISAM项目的目标。为了实现其目标,ISAM采用以下策略:(a)提供编程范例及其执行环境的综合环境;(b)通过多层协作模式统一处理适应问题,系统和应用都为此作出贡献。调度过程——ISAM架构的核心——管理这种协作。引入表达适应性的全息语言抽象,实现了应用程序部分对适应性的控制。因此,适应性对应用程序来说并不是完全透明的。在本文中,我们提出了用于设计ISAM体系结构的主要决策。我们还介绍了具有自适应行为的移动应用程序的第一种分类。
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