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Syntax and semantics of multi-adjoint normal logic programming

机译:多伴随法线逻辑程序设计的语法和语义

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Multi-adjoint logic programming is a general framework with interesting features, which involves other positive logic programming frameworks such as monotonic and residuated logic programming, generalized annotated logic programs, fuzzy logic programming and possibilistic logic programming One of the most interesting extensions of this framework is the possibility of considering a negation operator in the logic programs, which will improve its flexibility and the range of real applications. This paper introduces multi-adjoint normal logic programming, which is an extension of multi-adjoint logic programming including a negation operator in the underlying lattice. Beside the introduction of the syntax and semantics of this paradigm, we will provide sufficient conditions for the existence of stable models defined on a convex compact set of an euclidean space. Finally, we will consider a particular algebraic structure in which sufficient conditions can be given in order to ensure the unicity of stable models of multi-adjoint normal logic programs. (C) 2017 Elsevier B.V. All rights reserved.
机译:多伴随逻辑程序设计是具有有趣特征的通用框架,它涉及其他正逻辑程序设计框架,例如单调和剩余逻辑程序设计,广义带注释的逻辑程序,模糊逻辑程序设计和可能性逻辑程序设计。该框架最有趣的扩展是在逻辑程序中考虑取反运算符的可能性,这将提高其灵活性和实际应用范围。本文介绍了多伴随普通逻辑程序设计,它是对多伴随逻辑程序设计的扩展,在底层格中包括一个负运算符。除了介绍此范例的语法和语义外,我们还将为存在于欧几里德空间的凸紧集上定义的稳定模型提供充分的条件。最后,我们将考虑一个特殊的代数结构,在该结构中可以给出足够的条件,以确保多伴随正态逻辑程序的稳定模型的唯一性。 (C)2017 Elsevier B.V.保留所有权利。

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