forrest GUMP:用于验证和解释的工具

IF 1.1 3区 计算机科学 Q4 COMPUTER SCIENCE, SOFTWARE ENGINEERING
Alnis Murtovi, Alexander Bainczyk, Gerrit Nolte, Maximilian Schlüter, Bernhard Steffen
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引用次数: 3

摘要

摘要本文提出了一种用于验证和精确解释随机森林的工具Forest GUMP (Generalized, unified Merge Process)。除了基于前/后条件的验证和等价性检查外,Forest GUMP还支持三个解释概念,即众所周知的模型解释和结果解释,以及类表征,即对所有同等分类的样本进行精确表征。实现这些结果的关键技术是代数聚合,即将随机森林转换为语义等效的、简洁的代数决策图(代数决策图)的白盒表示。本文概述了该方法,并通过举例说明了Forest GUMP的使用。通过这种方式,读者应该获得对工具的直觉,以及如何使用它来增加对所考虑的数据集的理解,以及对随机森林和ADD技术特征的理解,这里丰富了包括不可行的路径消除。由于Forest GUMP是公开可用的,所有实验都可以使用ARFF格式的任何数据集进行复制、修改和补充。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Forest GUMP: a tool for verification and explanation
Abstract In this paper, we present Forest GUMP (for Generalized, Unifying Merge Process) a tool for verification and precise explanation of Random forests. Besides pre/post-condition-based verification and equivalence checking, Forest GUMP also supports three concepts of explanation, the well-known model explanation and outcome explanation , as well as class characterization , i.e., the precise characterization of all samples that are equally classified. Key technology to achieve these results is algebraic aggregation, i.e., the transformation of a Random Forest into a semantically equivalent, concise white-box representation in terms of Algebraic Decision Diagrams (ADDs). The paper sketches the method and demonstrates the use of Forest GUMP along illustrative examples. This way readers should acquire an intuition about the tool, and the way how it should be used to increase the understanding not only of the considered dataset, but also of the character of Random Forests and the ADD technology, here enriched to comprise infeasible path elimination. As Forest GUMP is publicly available all experiments can be reproduced, modified, and complemented using any dataset that is available in the ARFF format.
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来源期刊
CiteScore
4.50
自引率
6.70%
发文量
39
期刊介绍: The International Journal on Software Tools for Technology Transfer (STTT) provides a forum for the discussion of all aspects of tools supporting the development of computer systems. It offers, above all, a tool-oriented link between academic research and industrial practice. Tool support for the development of reliable and correct computer-based systems is of growing importance, and a wealth of design methodologies, algorithms, and associated tools have been developed in different areas of computer science. However, each area has its own culture and terminology, preventing researchers from taking advantage of the results obtained by colleagues in other fields. Tool builders are often unaware of the work done by others, and thus unable to apply it. The situation is even more critical when considering the transfer of new technology into industrial practice.
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