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Semantic Interpretation as Computation in Nonmonotonic Logic: The Real Meaning of the Suppression Task

机译:作为非单调逻辑中的计算的语义解释:抑制任务的真正含义

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摘要

Interpretation is the process whereby a hearer reasons to an interpretation of a speaker's discourse. The hearer normally adopts a credulous attitude to the discourse, at least for the purposes of interpreting it. That is to say the hearer tries to accommodate the truth of all the speaker's utterances in deriving an intended model. We present a nonmonotonic logical model of this process which defines unique minimal preferred models and efficiently simulates a kind of closed-world reasoning of particular interest for human cognition. Byrne's "suppression" data (Byrne, 1989) are used to illustrate how variants on this logic can capture and motivate subtly different interpretative stances which different subjects adopt, thus indicating where more fine-grained empirical data are required to understand what subjects are doing in this task. We then show that this logical competence model can be implemented in spreading activation network models. A one pass process interprets the textual input by constructing a network which then computes minimal preferred models for (3-valued) valuations of the set of propositions of the text. The neural implementation distinguishes easy forward reasoning from more complex backward reasoning in a way that may be useful in explaining directionality in human reasoning.
机译:口译是听众推理说话者话语的过程。聆听者通常对话语采取轻信的态度,至少出于解释目的。就是说,听众在推导预期模型时会试图容纳所有说话者的话语的真实性。我们提出了此过程的非单调逻辑模型,该模型定义了唯一的最小首选模型,并有效地模拟了一种特别引起人类认知的封闭世界推理。伯恩(Byrne,1989)的“抑制”数据用于说明此逻辑的变体如何捕获并激发不同主体采用的微妙的不同解释立场,从而表明需要更多细粒度的经验数据来了解主体在做什么。这个任务。然后,我们证明可以在扩展激活网络模型中实现此逻辑能力模型。单次通过过程通过构造一个网络来解释文本输入,然后该网络计算用于文本命题集的(3值)估值的最小首选模型。神经实现将简单的正向推理与更复杂的反向推理区分开来,这可能有助于解释人类推理的方向性。

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