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Quadratic programming for class ordering in rule induction

机译:规则归纳中用于类排序的二次编程

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摘要

Separate-and-conquer type rule induction algorithms such as Ripper, solve a K > 2 class problem by converting it into a sequence of K - 1 two-class problems. As a usual heuristic, the classes are fed into the algorithm in the order of increasing prior probabilities. Although the heuristic works well in practice, there is much room for improvement. In this paper, we propose a novel approach to improve this heuristic. The approach transforms the ordering search problem into a quadratic optimization problem and uses the solution of the optimization problem to extract the optimal ordering. We compared new Ripper (guided by the ordering found with our approach) with original Ripper (guided by the heuristic ordering) on 27 datasets. Simulation results show that our approach produces rulesets that are significantly better than those produced by the original Ripper.
机译:分离器式规则归纳算法(例如Ripper)将K> 2类问题转化为一系列K-1个两类问题,从而解决了K> 2类问题。作为一种通常的启发式方法,将这些类按先验概率增加的顺序输入到算法中。尽管启发式方法在实践中效果很好,但仍有很大的改进空间。在本文中,我们提出了一种新颖的方法来改进这种启发式方法。该方法将排序搜索问题转换为二次优化问题,并使用优化问题的解决方案来提取最优排序。我们在27个数据集上将新的Ripper(由我们的方法找到的顺序指导)与原始Ripper(由启发式顺序指导)进行了比较。仿真结果表明,我们的方法所生成的规则集明显优于原始Ripper生成的规则集。

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