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A Space-Based Interoperability Model

机译:基于空间的互操作性模型

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Software components may need to reason on thematic information that are usually contextualized in several and different dimensions. A person, for instance, may be physically located in a room; may play a specific role in an organization chart; and may be associated with an RFID tag in a set of identifiers. Moreover, software components may require thematic information which are produced by other software components and, in turn, they may be sources of information. This paper presents an interoperability model based on spatial concepts. The spatial model supports the contextualization of thematic information in different spaces - be they conceptual or physical. Main concepts are spaces, locations and mapping between locations belonging to different spaces. The model constitutes the basis to enable information sharing between software components. From this point of view, software components declare their interest in information from specific spatial locations (subscription contexts) and diffuse information in possibly other specific spatial locations (publication contexts). In a framework reifying the model we propose, software components may retrieve information without knowing who are the other components in the system. Indeed, the model enforces the indirect communication between software components which may rely on different views of the information domain.
机译:软件组件可能需要有关通常在几个和不同维度中化的主题信息的推理。例如,一个人可以在房间里物理上;可能在组织结构图中发挥特定作用;并且可以与一组标识符中的RFID标签相关联。此外,软件组件可能需要由其他软件组件产生的主题信息,并且反过来,它们可能是信息的来源。本文介绍了基于空间概念的互操作性模型。空间模型支持不同空格中的主题信息的上下文化 - 是他们概念或物理。主要概念是属于不同空格的位置之间的空格,位置和映射。该模型构成了在软件组件之间启用信息共享的基础。从这个角度来看,软件组件在特定空间位置(订阅上下文)和漫反射信息中声明他们的兴趣在可能的其他特定空间位置(发布上下文)。在框架内重新配置我们提出的模型中,软件组件可以在不知道系统中的其他组件的情况下检索信息。实际上,该模型强制了可以依赖于信息域的不同视图的软件组件之间的间接通信。

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