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A Foundation of Solution Methods for Constraint Hierarchies

机译:约束层次结构解决方法的基础

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Constraint hierarchies provide a framework for soft constraints, and have been applied to areas such as artificial intelligence, logic programming, and user interfaces. In this framework, constraints are associated with hierarchical preferences or priorities called strengths, and may be relaxed if they conflict with stronger constraints. To utilize constraint hierarchies, researchers have designed and implemented various practical constraint satisfaction algorithms. Although existing algorithms can be categorized into several approaches, what kinds of algorithms are possible has been unclear from a more general viewpoint. In this paper, we propose a novel theory called generalized local propagation as a foundation of algorithms for solving constraint hierarchies. This theory formalizes a way to express algorithms as constraint scheduling, and presents theorems that support possible approaches. A benefit of this theory is that it covers algorithms using constraint hierarchy solution criteria known as global comparators, for which only a small number of algorithms have been implemented. With this theory, we provide a new classification of solution criteria based on their difficulties in constraint satisfaction. We also discuss how existing algorithms are related to our theory, which will be helpful in designing new algorithms.
机译:约束层次结构为软约束提供了框架,并已应用于诸如人工智能,逻辑编程和用户界面等领域。在此框架中,约束与称为优先级的层次结构偏好或优先级相关联,如果约束与更强的约束冲突,则可以放宽约束。为了利用约束层次结构,研究人员设计并实现了各种实用的约束满足算法。尽管可以将现有算法分类为几种方法,但是从更广泛的角度来看,哪种算法是可能的还不清楚。在本文中,我们提出了一种称为广义局部传播的新颖理论,作为解决约束层次结构的算法的基础。该理论形式化了一种将算法表达为约束调度的方法,并提出了支持可能方法的定理。该理论的一个好处是它涵盖了使用约束层次解决方案标准的算法(称为全局比较器),为此仅实施了少量算法。借助这种理论,我们根据解决方案标准在约束满足方面的困难提供了新的分类标准。我们还将讨论现有算法如何与我们的理论联系起来,这将有助于设计新算法。

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