Variational Quantum Integrated Sensing and Communication

Fuente: arXiv
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Main Authors: Nikoloska, Ivana, Simeone, Osvaldo
Format: Preprint
Published: 2025
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author Nikoloska, Ivana
Simeone, Osvaldo
author_facet Nikoloska, Ivana
Simeone, Osvaldo
contents The integration of sensing and communication functionalities within a common system is one of the main innovation drivers for next-generation networks. In this paper, we introduce a quantum integrated sensing and communication (QISAC) protocol that leverages entanglement in quantum carriers of information to enable both superdense coding and quantum sensing. The proposed approach adaptively optimizes encoding and quantum measurement via variational circuit learning, while employing classical machine learning-based decoders and estimators to process the measurement outcomes. Numerical results for qudit systems demonstrate that the proposed QISAC protocol can achieve a flexible trade-off between classical communication rate and accuracy of parameter estimation.
format Preprint
id arxiv_https___arxiv_org_abs_2511_16597
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Variational Quantum Integrated Sensing and Communication
Nikoloska, Ivana
Simeone, Osvaldo
Quantum Physics
Information Theory
Machine Learning
Signal Processing
The integration of sensing and communication functionalities within a common system is one of the main innovation drivers for next-generation networks. In this paper, we introduce a quantum integrated sensing and communication (QISAC) protocol that leverages entanglement in quantum carriers of information to enable both superdense coding and quantum sensing. The proposed approach adaptively optimizes encoding and quantum measurement via variational circuit learning, while employing classical machine learning-based decoders and estimators to process the measurement outcomes. Numerical results for qudit systems demonstrate that the proposed QISAC protocol can achieve a flexible trade-off between classical communication rate and accuracy of parameter estimation.
title Variational Quantum Integrated Sensing and Communication
topic Quantum Physics
Information Theory
Machine Learning
Signal Processing
url https://arxiv.org/abs/2511.16597