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Implicit Expressibility in Multiple-Valued Logic

Moscow University Computational Mathematics and Cybernetics, 2022
zbMATH Open Web Interface contents unavailable due to conflicting licenses.
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A design of multiple-valued logic neuron

Proceedings of the Twentieth International Symposium on Multiple-Valued Logic, 2002
A design for a multiple-valued-logic (MVL) neuron model, in which MVL operations are used to produce analog responses to be fed to a quantizer, is presented. The proposed MVL neuron model can be trained to classify the input pattern vectors according to the special inputs called 'desired responses'.
Tatsuki Watanabe   +3 more
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Optoelectronic multiple-valued logic implementation

Optics Letters, 1989
A design for optoelectronic multiple-value logic circuits that uses bistable laser diodes or light-emitting diodes is reported. In this multiple-valued logic design, an optoelectronic tristable switching circuit, or light-current mirror, in which two bistable light-emitting diodes are connected in parallel serves as the basic logic element.
S, Liu, C, Li, J, Wu, Y, Liu
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Uncertainty, Energy, and Multiple-Valued Logics

IEEE Transactions on Computers, 1986
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Issues on adjointness in multiple-valued logics

Information Sciences, 2006
The paper deals with relating conjunctions to implications using adjointness in \((L,P)\)-valued logic, where \((L,\leq)\) and \((P,\leq)\) are complete lattices, interpreting two types of truth values. The paper starts with a synopsis of the basic results on the notion of residuation (= adjointness). This notion is used to enlarged the scope of choice
Nehad N. Morsi, Elewa M. Roshdy
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Multiple-valued logic

IEEE Potentials, 1995
The ultimate usefulness of a number system depends on its implementation. Multiple-valued logic has been implemented in charge-coupled devices (CCD). In this technology, logic values are encoded as charge. For example, prototype four-valued logic devices have been implemented at the University of Twente (Enschede, Holland). Hitachi has implemented a 16-
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Digital Simulation with Multiple Logic Values

IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems, 1986
Multiple-valued logics have long been used, often in intuitive fashion, for simulating transients, errors, unknown states, variable-strength signals, etc., in binary digital circuits. This paper presents a rigorous algebraic method for analyzing such logics, and for systematically constructing new ones.
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Multiple-valued logic operations with universal literals

Proceedings of 24th International Symposium on Multiple-Valued Logic (ISMVL'94), 1994
We propose the use of universal literals as a means of reducing the cost of multiple-valued circuits. A universal literal is any function on one variable. The target architecture is a sum-of-products structure, where sum is the truncated sum and product terms consist of the minimum of universal literals.
Dueck, Gerhard W., Butler, Jon T.
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Formalizing multiple-valued logics as institutions

2005
Many of the uncertainty management systems used in the Knowledge Based Systems technology can be considered as the set of mechanisms that a certain underlying multiple-valued logic supplies: certainty values, numeric or linguistic, would be the truth-values of that logic, a knowledge base would be a set of axioms, and the mechanisms of uncertainty ...
Jaume Agustí-Cullell   +3 more
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Computational Neuroscience and Multiple-Valued Logic

2009 39th International Symposium on Multiple-Valued Logic, 2009
Ten years have passed since the Japanese “Century of the Brain” was promoted, and its most notable objective, the unique “Creating the Brain” approach, has led us to apply a humanoid robot as a neuroscience tool. Here, I explain possible communications between computational neuroscience and multiple-valued logic.
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