提出对比解释,回答‘为何是P而非Q’的逻辑问题。
Rethinking Explanations: Formalizing Contrast in Description Logics
- 用描述逻辑定义对比性解释,聚焦事实P与反例Q的差异。
- 在EL和ALC逻辑中验证解释性质,支持不同规模知识库的实验。
- 适合需理解概念差异的用户,如知识图谱调试者或初学者。
近年来,解释描述逻辑(DL)知识库中的蕴含关系日益受到关注。现有方法仅关注证明真断言的合理性或补全缺失断言的溯因推理,但这些方法仅列出推理步骤,缺乏以用户为中心的设计,未考虑提问者的认知水平、先验知识或实际需求。本文提出对比解释,旨在回答“为何某个断言P成立,而非另一个相似断言Q”这一问题。该思路源于观察:当用户发现事件P发生时,常因预期了类似事件Q而感到意外。单独解释“为何是P”和“为何不是Q”均不充分,用户真正需要的是两者之间的差异。本文首先形式化对比问题,然后在描述逻辑框架下定义对比解释。其中,事实为形如C(x)的ABox断言,可能的反例包括C(y)(针对个体y)或D(x)(针对概念D)。我们进一步研究了对比解释在逻辑系统EL和ALC中的性质,并实现该定义,在不同规模的知识库上进行了实验评估。
原文摘要 · Abstract (English)
There has been a growing interest in explaining entailments over description logic (DL) knowledge bases. The existing explanation formalisms focus on justifications to explain true axioms, and abductive reasoning to explain missing axioms in a knowledge base. However, these formalisms only point out the reasoning steps behind a (missing) entailment and lack a user-centered approach as they do not consider an inquirer's needs, level of understanding, or prior knowledge. We propose contrastive explanations, aiming at answering "why an axiom P (fact) is true instead of another axiom Q (foil)" over description logic knowledge bases. The motivation arises from the observation that when a user discovers that P has occurred, they are often surprised because they anticipated the occurrence of another similar event Q. Furthermore, individual explanations for "why P" and "why not Q" are unsatisfactory since a user expects to see the difference between P and Q. In this work, we first present formal foundations of contrasting questions and then define contrastive explanations within description logics. To this end, facts include ABox assertions of the form C(x) for a concept C and individual x. Possible foils for such facts are assertions C(y) (contrasting against an individual y), or D(x) (contrasting against a concept D). Additionally, we explore the properties of contrastive explanations in the DL EL and ALC. We also provide an implementation of our definition and an experimental evaluation on KBs of varying sizes.
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