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A knowledge processing middleware framework and its relation to the JDL data fusion model

机译:知识处理中间件框架及其与JDL数据融合模型的关系

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摘要

Any autonomous system embedded in a dynamic and changing environment must be able to create qualitative knowledge and object structures representing aspects of its environment on the fly from raw or preprocessed sensor data in order to reason qualitatively about the environment and to supply such state information to other nodes in the distributed network in which it is embedded. These structures must be managed and made accessible to deliberative and reactive functionalities whose successful operation is dependent on being situationally aware of the changes in both the robotic agent's embedding and internal environments. DyKnow is a knowledge processing middleware framework which provides a set of functionalities for contextually creating, storing, accessing and processing such structures. The framework is implemented and has been deployed as part of a deliberative/reactive architecture for an autonomous unmanned aerial vehicle. The architecture itself is distributed and uses real-time CORBA as a communications infrastructure. We describe the system and show how it can be used to create more abstract entity and state representations of the world which can then be used for situation awareness by an unmanned aerial vehicle in achieving mission goals. We also show that the framework is a working instantiation of many aspects of the JDL data fusion model.
机译:嵌入动态变化的环境中的任何自治系统都必须能够从原始或预处理的传感器数据中动态创建代表其环境方面的定性知识和对象结构,以便定性地推断环境并将此类状态信息提供给其他人嵌入它的分布式网络中的节点。必须对这些结构进行管理,并使它们具有审议性和反应性功能,这些功能的成功运行取决于对情境的了解以及对机器人代理程序的嵌入和内部环境的更改的了解。 DyKnow是一个知识处理中间件框架,它提供了一组功能来根据上下文创建,存储,访问和处理此类结构。该框架已实现并已作为自主/无人驾驶飞机的协商/反应体系结构的一部分进行了部署。该体系结构本身是分布式的,并使用实时CORBA作为通信基础结构。我们描述了该系统,并说明了如何将其用于创建世界的更多抽象实体和状态表示,然后可将其用于无人驾驶飞机用于实现任务目标的态势感知。我们还展示了该框架是JDL数据融合模型许多方面的有效实例。

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  • 来源
    《Journal of Intelligent and Fuzzy Systems》 |2006年第4期|335-351|共17页
  • 作者单位

    Department of Computer and Information Science, Link?ping University, 581 83 Link?ping, Sweden;

    Department of Computer and Information Science, Link?ping University, 581 83 Link?ping, Sweden;

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