Hybrid Quantum-Classical Detection for RIS-Assisted SC-FDE via Grover Adaptive Search

Fuente: arXiv
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Autores principales: Tariq, Maryam, Alhussein, Omar, Abdelraheem, Raneem, Quran, Abdullah, Kaddoum, Georges, Muhaidat, Sami
Formato: Preprint
Publicado: 2025
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author Tariq, Maryam
Alhussein, Omar
Abdelraheem, Raneem
Quran, Abdullah
Kaddoum, Georges
Muhaidat, Sami
author_facet Tariq, Maryam
Alhussein, Omar
Abdelraheem, Raneem
Quran, Abdullah
Kaddoum, Georges
Muhaidat, Sami
contents Wideband and low-latency requirements in sixth-generation (6G) networks demand detectors that approach maximum-likelihood (ML) performance without incurring exponential complexity. This work develops a hybrid quantum-classical detection framework for reconfigurable intelligent surface (RIS)-assisted single-carrier (SC) frequency-domain equalization (FDE) over frequency-selective channels. The ML detection objective is reformulated as a quadratic unconstrained binary optimization (QUBO) problem and solved via Grover adaptive search (GAS). To accelerate convergence, we introduce a frequency-domain MMSE threshold that exploits the circulant structure of SC-FDE channels, yielding low-complexity initialization. The framework is evaluated across varying channel lengths and RIS sizes, confirming robustness and scalability. In addition, GAS requirements are quantified through register widths and gate counts, and its query complexity is analyzed to characterize the algorithm's cost for block transmission in frequency-selective channels. Quantum circuit simulations are conducted in Qiskit under both ideal and noisy conditions. In the ideal case, the detector achieves near-optimal performance while benefiting from Grover's quadratic speedup, reducing the search cost from from O(M^N) exhaustive evaluations to O(SQRT(M^N)) oracle queries. Under noise, the shallow depth of the GAS circuits, aided by MMSE initialization, makes depolarizing errors negligible, while readout errors introduce moderate degradation yet still preserve performance close to the MMSE baseline. These results establish the feasibility of quantum-enhanced detection for RIS-assisted broadband communications, highlighting both algorithmic scalability and practical robustness for 6G networks.
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institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Hybrid Quantum-Classical Detection for RIS-Assisted SC-FDE via Grover Adaptive Search
Tariq, Maryam
Alhussein, Omar
Abdelraheem, Raneem
Quran, Abdullah
Kaddoum, Georges
Muhaidat, Sami
Networking and Internet Architecture
Wideband and low-latency requirements in sixth-generation (6G) networks demand detectors that approach maximum-likelihood (ML) performance without incurring exponential complexity. This work develops a hybrid quantum-classical detection framework for reconfigurable intelligent surface (RIS)-assisted single-carrier (SC) frequency-domain equalization (FDE) over frequency-selective channels. The ML detection objective is reformulated as a quadratic unconstrained binary optimization (QUBO) problem and solved via Grover adaptive search (GAS). To accelerate convergence, we introduce a frequency-domain MMSE threshold that exploits the circulant structure of SC-FDE channels, yielding low-complexity initialization. The framework is evaluated across varying channel lengths and RIS sizes, confirming robustness and scalability. In addition, GAS requirements are quantified through register widths and gate counts, and its query complexity is analyzed to characterize the algorithm's cost for block transmission in frequency-selective channels. Quantum circuit simulations are conducted in Qiskit under both ideal and noisy conditions. In the ideal case, the detector achieves near-optimal performance while benefiting from Grover's quadratic speedup, reducing the search cost from from O(M^N) exhaustive evaluations to O(SQRT(M^N)) oracle queries. Under noise, the shallow depth of the GAS circuits, aided by MMSE initialization, makes depolarizing errors negligible, while readout errors introduce moderate degradation yet still preserve performance close to the MMSE baseline. These results establish the feasibility of quantum-enhanced detection for RIS-assisted broadband communications, highlighting both algorithmic scalability and practical robustness for 6G networks.
title Hybrid Quantum-Classical Detection for RIS-Assisted SC-FDE via Grover Adaptive Search
topic Networking and Internet Architecture
url https://arxiv.org/abs/2511.04173