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Research PaperResearchia:202606.16037

A Perception vs. Distortion Perspective on Score-Based Generative Channel Estimation

Marco Skocaj

Abstract

Driven by their remarkable success in computer vision and inverse problem solving, score-based models are increasingly applied to wireless communications, where they show promise across a range of physical-layer tasks. However, despite this growing interest, the current literature often lacks a rigorous analysis of when score-matching offers a tangible advantage over traditional discriminative learning. This paper aims to address this gap through the use-case of channel estimation, a fundamental...

Submitted: June 16, 2026Subjects: Engineering; Chemical Engineering

Description / Details

Driven by their remarkable success in computer vision and inverse problem solving, score-based models are increasingly applied to wireless communications, where they show promise across a range of physical-layer tasks. However, despite this growing interest, the current literature often lacks a rigorous analysis of when score-matching offers a tangible advantage over traditional discriminative learning. This paper aims to address this gap through the use-case of channel estimation, a fundamental inverse problem in wireless systems. We present a theoretically grounded interpretation of score-based channel estimation through the lens of the perception-distortion tradeoff, identifying the conditions where score matching excels as well as its key limitations. In particular, by modeling downstream wireless tasks (e.g., capacity maximization) as functionals of the channel estimation process, we quantify the excess risk incurred by standard distortion-minimization approaches. Extensive numerical results show that under high predictive uncertainty, the large excess risk gap can be offset by score-based estimation, enabling near Bayesian-optimal precoding via the learned posterior, whereas in the low predictive uncertainty regime, discriminative distortion-minimization approaches are preferable due to lower complexity and more efficient use of model capacity.


Source: arXiv:2606.16815v1 - http://arxiv.org/abs/2606.16815v1 PDF: https://arxiv.org/pdf/2606.16815v1 Original Link: http://arxiv.org/abs/2606.16815v1

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Submission Info
Date:
Jun 16, 2026
Topic:
Chemical Engineering
Area:
Engineering
Comments:
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