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Trying Again to Fail-First

机译:再次尝试失败 - 首先

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摘要

For constraint satisfaction problems (CSPs), Haralick & Elliott introduced the Fail-First Principle and defined in it terms of minimizing branch depth. By devising a range of variable ordering heuristics, each in turn trying harder to fail first, Smith & Grant showed that adherence to this strategy does not guarantee reduction in search effort. The present work builds on Smith & Grant. It benefits from the development of a new framework for characterizing heuristic performance that defines two policies, one concerned with enhancing the likelihood of correctly extending a partial solution, the other with minimizing the effort to prove insolubility. The Fail-First Principle can be restated as calling for adherence to the second, fail-first policy, while discounting the other, promise policy. Our work corrects some deficiencies in the work of Smith & Grant, and goes on to confirm their finding that the Fail-First Principle, as originally defined, is insufficient. We then show that adherence to the fail-first policy must be measured in terms of size of insoluble subtrees, not branch depth. We also show that for soluble problems, both policies must be considered in evaluating heuristic performance. Hence, even in its proper form the Fail-First Principle is insufficient. We also show that the "FF" series of heuristics devised by Smith & Grant is a powerful tool for evaluating heuristic performance, including the subtle relations between heuristic features and adherence to a policy.
机译:对于约束满足问题(CSP),Haralick&Elliott引入了故障第一原理,并在最小化分支深度的条款中定义。通过设计一系列可变的订购启发式,每次反过来都会努力失败,史密斯和格兰特表明,遵守这种策略并不能保证降低搜索努力。目前的工作是史密斯和格兰特。它从开发一个新框架的发展,用于表征出发化的性能,该表现定义了两个政策,一个有关的涉及提高正确延伸部分解决方案的可能性,另一个具有最小化努力证明不溶性的努力。故障第一个原则可以重新调整到遵守第二个故障第一政策的责任,同时折扣另一个,承诺政策。我们的工作纠正了史密斯和赠款的工作中的一些缺陷,继续确认他们发现故障第一原则,原得最初定义的原则不足。然后,我们表明必须在不溶性子树的规模,而不是分支深度的方面来衡量失败第一政策的遵守。我们还表明,对于可靠的问题,必须考虑评估启发式性能的两项政策。因此,即使在其正确的形式中,故障第一原则也不足够。我们还表明,Smith&Grant的“FF”系列启发式机启发式是评估启发式表现的强大工具,包括启发式特征与遵守政策的浓缩关系。

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