An integration of knowledge acquisition techniques and EBL for real-world production planning

Thomas Reinartz, Franz Schmalhofer
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引用次数: 7

Abstract

The paper presents an approach to the integration of knowledge acquisition (KA) techniques and explanation-based learning (EBL). Knowledge acquisition techniques are used to delineate a problem class hierarchy for different manufacturing tasks in mechanical engineering. This hierarchy is stepwise formalized into a terminological representation language. The terminological descriptions are then combined with cases of specific manufacturing tasks and their solutions (in the form of production plans). Explanation-based learning is applied to the cases and skeletal plans are automatically constructed for the terminal classes of the problem class hierarchy. Such skeletal plans consist of a dependency structure with a sequence of operators, that can be instantiated to specific plans for all other problems of the class. An evaluation of the proposed KA/EBL integration demonstrates its strengths as well as certain limitations of explanation-based generalization.

知识获取技术和EBL在现实生产计划中的集成
本文提出了一种将知识获取(KA)技术与基于解释的学习(EBL)相结合的方法。知识获取技术用于描述机械工程中不同制造任务的问题类层次结构。这种层次结构被逐步形式化为术语表示语言。然后将术语描述与特定制造任务及其解决方案的案例相结合(以生产计划的形式)。将基于解释的学习应用于案例,并为问题类层次结构的终端类自动构建框架计划。这样的骨架计划由一个具有运算符序列的依赖结构组成,这些运算符可以实例化为类的所有其他问题的特定计划。对所提出的KA/EBL集成的评估表明了其优势以及基于解释的泛化的某些局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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