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arXiv: 2204.06737
handle: 10773/34317 , 1822/90281
Modelling complex information systems often entails the need for dealing with scenarios of inconsistency in which several requirements either reinforce or contradict each other. In this kind of scenarios, arising e.g. in knowledge representation, simulation of biological systems, or quantum computation, inconsistency has to be addressed in a precise and controlled way. This paper generalises Belnap-Dunn four-valued logic, introducing paraconsistent transition systems (PTS), endowed with positive and negative accessibility relations, and a metric space over the lattice of truth values, and their modal logic.
In Proceedings NCL 2022, arXiv:2204.06359
FOS: Computer and information sciences, Computer Science - Logic in Computer Science, Paraconsistent logic, Modal logic, Paraconsistency, F.3.1, Logic in Computer Science (cs.LO)
FOS: Computer and information sciences, Computer Science - Logic in Computer Science, Paraconsistent logic, Modal logic, Paraconsistency, F.3.1, Logic in Computer Science (cs.LO)
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