根据传统的二值逻辑(two-valued logic),一个概念范畴的内涵和外延都必须是明确的,命题非真即假,如互补反义词“生—死”,二者不可兼顾。
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To deal with those problems, we should develop a new kind of logic that is different from 2-valued logic. This is many-valued logic.
为了处理这类问题,就需要发展起来一种不同于二值逻辑的逻辑,这就是多值逻辑。
参考来源 - 卢卡西维茨多值逻辑及其与一些逻辑的比较Components have multi-states in complex network environment,and binary logic(BL)is very limited to describe this situation. So,multi-valued logic(MVL)is adopted to analyze component state in this paper.
复杂网络环境下的系统组件往往处于多种不同状态,二值逻辑(BL)在描述多种组件状态时显得无能为力。
参考来源 - MVL条件下k·2,447,543篇论文数据,部分数据来源于NoteExpress
本算法比较简单,适用于二值逻辑和多值逻辑。
The algorithm is simple and suitable for 2-valued and many-valued logic.
传统的数据库都是以二值逻辑和精确数据为基础的,不能表示许多模糊不清的对象。
Traditional database is based on two value logic and precise data; it can't represent many obscure objects.
传统的话语理解模式是建立在严格追求精确理解的二值逻辑基础上的代码模式,它不能真正解决交际中话语含义的理解。
The traditional model for utterance understanding is the code model based on the two-valued logic, which, however, cannot interpret how conversational implicature is inferred from utterance.
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