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A new complicated-knowledge representation approach based on knowledge meshes

机译:一种新的基于知识网格的复杂知识表示方法

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This paper presents a new complicated-knowledge representation method for the self-reconfiguration of complex systems such as complex software systems, complex manufacturing systems, and knowledgeable manufacturing systems. Herein, new concepts of a knowledge mesh (KM) and an agent mesh (AM) are proposed along with a new KM-based approach to complicated-knowledge representation. KM is the representation of such complicated macroknowledge as an advanced manufacturing mode, focusing on knowledge about the structure, functions, and information flows of an advanced manufacturing system. The multiple set, KM, and the mapping relationships between both, are then formally defined. The union, intersection, and minus operations on the multiple sets are proposed, and their properties proved. Then, the perfectness of a KM, the redundancy set between the two KMs, and the multiple redundancy set on the redundancy set are defined. Three examples are provided to illustrate the concepts of the KM, multiple set, multiple redundancy set, and logical operations. On the basis of the above, the KM-based inference engine is presented. In logical operations on KMs, each KM is taken as an operand. A new KM obtained by operations on KM multiple sets can be mapped into an AM for automatic reconfiguration of complex software systems. Finally, the combination of two real management modes is exemplified for the effective application of the new KM-based method to the self-reconfiguration of complex systems. It is worth mentioning that KM multiple sets can also be taken as a new formal representation of software systems if their corresponding AMs are the real software systems.
机译:本文提出了一种新的复杂知识表示方法,用于复杂系统的自我重配置,例如复杂软件系统,复杂制造系统和知识丰富的制造系统。在此,提出了知识网格(KM)和代理网格(AM)的新概念,以及基于KM的复杂知识表示新方法。 KM代表着诸如高级制造模式之类的复杂的宏观知识,其重点是关于高级制造系统的结构,功能和信息流的知识。然后正式定义了多个集合KM以及两者之间的映射关系。提出了多组集合的并,交,减运算,并证明了它们的性质。然后,定义了KM的完善性,两个KM之间的冗余集以及冗余集上的多重冗余集。提供了三个示例来说明KM,多集,多冗余集和逻辑操作的概念。在此基础上,提出了基于KM的推理引擎。在KM上进行逻辑运算时,每个KM被当作一个操作数。通过对KM多个集合进行操作而获得的新KM可以映射到AM中,以自动重新配置复杂的软件系统。最后,举例说明了两种实际管理模式的组合,以便将新的基于KM的方法有效地应用于复杂系统的自我重配置。值得一提的是,如果KM多个集合的对应AM是真实的软件系统,则它们也可以作为软件系统的新形式表示。

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