English

Uncertainty in Quantum Rule-Based Systems

Artificial Intelligence 2021-01-14 v1 Quantum Physics

Abstract

This article deals with the problem of the uncertainty in rule-based systems (RBS), but from the perspective of quantum computing (QC). In this work we first remember the characteristics of Quantum Rule-Based Systems (QRBS), a concept defined in a previous article by one of the authors of this paper, and we introduce the problem of quantum uncertainty. We assume that the subjective uncertainty that affects the facts of classical RBSs can be treated as a direct consequence of the probabilistic nature of quantum mechanics (QM), and we also assume that the uncertainty associated with a given hypothesis is a consequence of the propagation of the imprecision through the inferential circuits of RBSs. This article does not intend to contribute anything new to the QM field: it is a work of artificial intelligence (AI) that uses QC techniques to solve the problem of uncertainty in RBSs. Bearing the above arguments in mind a quantum model is proposed. This model has been applied to a problem already defined by one of the authors of this work in a previous publication and which is briefly described in this article. Then the model is generalized, and it is thoroughly evaluated. The results obtained show that QC is a valid, effective and efficient method to deal with the inherent uncertainty of RBSs

Keywords

Cite

@article{arxiv.1811.02782,
  title  = {Uncertainty in Quantum Rule-Based Systems},
  author = {Vicente Moret-Bonillo and Isaac Fernández-Varela and Diego Alvarez-Estevez},
  journal= {arXiv preprint arXiv:1811.02782},
  year   = {2021}
}

Comments

20 pages, 8 tables, 7 figures

R2 v1 2026-06-23T05:07:24.822Z