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Reuse of constraint knowledge bases and problem solvers explored in engineering design

机译:工程设计中探索的约束知识库和问题解决者的重用

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Reuse has long been a major goal of the knowledge engineering community. We present a case study of the reuse of constraint knowledge acquired for one problem solver, by two further problem solvers. For our analysis, we chose a well-known benchmark knowledge base (KB) system written in CLIPS, which was based on the propose and revise problem-solving method and which had a lift/elevator KB. The KB contained four components, including constraints and data tables, expressed in an ontology that reflects the propose and revise task structure. Sufficient trial data was extracted manually to demonstrate the approach on two alternative problem solvers: a spreadsheet (Excel) and a constraint logic solver (ECLiPSe). The next phase was to implement ExtrAKTor, which automated the process for the whole KB. Each KB that is processed results in a working system that is able to solve the corresponding configuration task (and not only for elevators). This is in contrast to earlier work, which produced abstract formulations of the problem-solving methods but which were unable to perform reuse of actual KBs. We subsequently used the ECLiPSe solver on some more demanding vertical transport configuration tasks. We found that we had to use a little-known propagation technique described by Le Provost and Wallace (1991). Further, our techniques did not use any heuristic "fix"' information, yet we successfully dealt with a "thrashing" problem that had been a key issue in the original vertical transit work. Consequently, we believe we have developed a widely usable approach for solving this class of parametric design problem, by applying novel constraint-based problem solvers to data and formulae stored in existing KBs.
机译:长期以来,重用一直是知识工程界的主要目标。我们提供了一个案例研究,该案例研究了另外两个问题解决者为一个问题解决者获得的约束知识的重用。为了进行分析,我们选择了一个以CLIPS编写的著名基准知识库(KB)系统,该系统基于提议和修订问题解决方法,并且具有升降机/电梯知识库。 KB包含四个组件,包括约束和数据表,它们以本体表达,反映了提议和修订的任务结构。手动提取了足够的试验数据,以演示在两种替代问题解决器上的方法:电子表格(Excel)和约束逻辑解决器(ECLiPSe)。下一阶段是实施ExtrAKTor,它将整个KB的过程自动化。处理的每个KB都会生成一个能够解决相应配置任务的工作系统(不仅适用于电梯)。这与早期的工作形成了鲜明的对比,早期的工作产生了解决问题的方法的抽象表述,但无法执行实际KB的重用。随后,我们将ECLiPSe求解器用于一些要求更高的垂直传输配置任务。我们发现我们必须使用Le Provost和Wallace(1991)描述的鲜为人知的传播技术。此外,我们的技术没有使用任何启发式的“修复”信息,但是我们成功地解决了“颠簸”问题,这是原始垂直运输工作中的关键问题。因此,我们相信,通过将新颖的基于约束的问题求解器应用于现有KB中存储的数据和公式,我们已经开发出了广泛的方法来解决此类参数设计问题。

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