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Dynamic application of problem solving strategies : dependency-based flow control

机译:问题解决策略的动态应用:基于依赖的流控制

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摘要

While humans may solve problems by applying any one of a number of different problem solving strategies, computerized problem solving is typically brittle, limited in the number of available strategies and ways of combining them to solve a problem. In this thesis, I present a method to flexibly select and combine problem solving strategies by using a constraint-propagation network, informed by higher-order knowledge about goals and what is known, to selectively control the activity of underlying problem solvers. Knowledge within each problem solver as well as the constraint-propagation network are represented as a network of explicit propositions, each described with respect to five interrelated axes of concrete and abstract knowledge about each proposition. Knowledge within each axis is supported by a set of dependencies that allow for both the adjustment of belief based on modifying supports for solutions and the production of justifications of that belief. I show that this method may be used to solve a variety of real-world problems and provide meaningful justifications for solutions to these problems, including decision-making based on numerical evaluation of risk and the evaluation of whether or not a document may be legally sent to a recipient in accordance with a policy controlling its dissemination.
机译:尽管人们可以通过应用许多不同的问题解决策略中的任何一种来解决问题,但是计算机化的问题解决通常很脆弱,可用策略的数量以及将它们组合起来解决问题的方式受到限制。在本文中,我提出了一种通过使用约束传播网络灵活选择和组合问题解决策略的方法,该网络以关于目标和已知知识的高阶知识为基础,有选择地控制底层问题解决者的活动。每个问题解决者以及约束传播网络中的知识都表示为一个明确的命题网络,每个命题都是相对于关于每个命题的具体和抽象知识的五个相互关联的轴进行描述的。每个轴内的知识由一组依赖关系支持,这些依赖关系既可以基于修改对解决方案的支持来调整信念,又可以产生该信念的理由。我证明了这种方法可用于解决各种现实问题,并为解决这些问题提供有意义的理由,包括基于风险数字评估的决策以及对是否可以合法发送文件的评估根据控制其传播的政策向接收者发送。

著录项

  • 作者

    Jacobi Ian Campbell;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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