Litcius/Paper detail

Fuzzy Logic on Quantum Annealers

Amir Pourabdollah, Giovanni Acampora, Roberto Schiattarella

2021IEEE Transactions on Fuzzy Systems23 citationsDOI

Abstract

Quantum computation is going to revolutionize the world of computing by enabling the design of massive parallel algorithms that solve hard problems in an efficient way, thanks to the exploitation of quantum mechanics effects, such as superposition, entanglement, and interference. These computational improvements could strongly influence the way how fuzzy systems are designed and used in contexts, such as Big Data, where computational efficiency represents a nonnegligible constraint to be taken into account. In order to pave the way toward this innovative scenario, this article introduces a novel representation of fuzzy sets and operators based on quadratic unconstrained binary optimization problems, so as to enable the implementation of fuzzy inference engines on a type of quantum computers known as quantum annealers.

Topics & Concepts

Computer scienceQuantum computerQuantum entanglementFuzzy logicSuperposition principleTheoretical computer scienceQuantumBinary numberQuantum gateQuadratic equationConstraint (computer-aided design)AlgorithmComputational scienceArtificial intelligenceMathematicsPhysicsQuantum mechanicsArithmeticMathematical analysisGeometryQuantum Computing Algorithms and ArchitectureQuantum Information and CryptographyComputability, Logic, AI Algorithms