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首页> 外文期刊>Soft computing: A fusion of foundations, methodologies and applications >Unified problem modeling language for knowledge engineering of complex systems - Task structure level and computational level
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Unified problem modeling language for knowledge engineering of complex systems - Task structure level and computational level

机译:复杂系统知识工程的统一问题建模语言-任务结构级别和计算级别

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The 90's has seen the emergence of hybrid configurations of four most commonly used intelligent methodologies, namely, symbolic knowledge based systems (e.g. expert systems), artificial neural networks, fuzzy systems and genetic algorithms. These hybrid configurations are used for different problem solving tasks/situations. In this paper we describe unified problem modeling language at two different levels, the task structure level for knowledge engineering of complex data intensive domains, and the computational level of the task level hybrid architecture. Among other aspects, the unified problem modeling language considers various intelligent methodologies and their hybrid configurations as technological primitives used to accomplish various tasks defined at the task structure level. The unified problem modeling language is defined in the form of five problem solving adapters. The problem solving adapters outline the goals, tasks, percepts/inputs, and hard and soft computing methods for modeling complex problems. The task structure level has been applied in modeling several applications in e-commerce, image processing, diagnosis, and other complex, time critical, and data intensive domains. We also define a layered intelligent multi-agent, operating system processes, intelligent technologies with the task structure level associative hybrid architecture. The layered architecture also facilitates component based software modeling process.
机译:上世纪90年代,出现了四种最常用的智能方法的混合配置,即基于符号知识的系统(例如专家系统),人工神经网络,模糊系统和遗传算法。这些混合配置用于不同的问题解决任务/情况。在本文中,我们在两个不同的级别上描述统一的问题建模语言,分别是复杂数据密集域的知识工程的任务结构级别和任务级混合体系结构的计算级别。除其他方面外,统一的问题建模语言将各种智能方法及其混合配置视为用于完成任务结构级别定义的各种任务的技术原语。统一的问题建模语言以五个问题解决适配器的形式定义。解决问题的适配器概述了用于对复杂问题建模的目标,任务,感知/输入以及硬和软计算方法。任务结构级别已应用于在电子商务,图像处理,诊断以及其他复杂,时间紧迫和数据密集型领域中的多个应用程序建模。我们还定义了分层智能多代理,操作系统流程,具有任务结构级别关联混合体系结构的智能技术。分层体系结构还促进了基于组件的软件建模过程。

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