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Autonomous adaptation to dynamic availability using a service-oriented component model

机译:使用面向服务的组件模型自主适应动态可用性

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This paper describes a project, called Gravity, that defines a component model, where components provide and require services (i.e., functionality) and all component interaction occurs via services. This approach introduces service-oriented concepts into a component model and execution environment. The goal is to support the construction and execution of component-based applications that are capable of autonomously adapting at run time due to the dynamic availability of the services provided by constituent components. In this component model the execution environment manages an application that is described as an abstract composition that can adapt and evolve at run time depending on available functionality. The motivation of Gravity is to simplify the construction of applications where dynamic availability arises, ranging from modern extensible systems to novel computing approaches, such as context-aware applications.
机译:本文介绍了一个名为Gravity的项目,该项目定义了一个组件模型,其中组件提供和需要服务(即功能),并且所有组件交互都是通过服务进行的。这种方法将面向服务的概念引入组件模型和执行环境。目标是支持基于组件的应用程序的构建和执行,这些组件由于组成组件提供的服务的动态可用性而能够在运行时自动进行适应。在此组件模型中,执行环境管理着一个应用程序,该应用程序被描述为一个抽象组成,可以根据可用功能在运行时进行适应和发展。 Gravity的动机是简化动态可用性出现的应用程序的构建,范围从现代可扩展系统到新颖的计算方法,例如上下文感知应用程序。

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