Perceptual-quality based AMC for enhanced mmWave spectral efficiency: concept and experiment

Değirmenci, Kıvanç and Günel, Hasan Atalay and Chraiti, Mohaned and Erçetin, Özgür and Ghrayeb, Ali and Görçin, Ali (2026) Perceptual-quality based AMC for enhanced mmWave spectral efficiency: concept and experiment. In: IEEE Wireless Communications and Networking Conference (WCNC), Kuala Lumpur, Malaysia

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Abstract

For high-throughput applications such as ultra-high-definition video streaming and immersive extended-reality, perceptual quality rather than bit-level accuracy defines the primary performance criterion and provides a more informative and spectrally efficient objective than strict bitwise reconstruction. This is particularly relevant in millimeter-wave (mmWave) and sub-Terahertz (sub-THz) systems, where path loss, short channel coherence times and phase noise introduce severe fluctuations that degrade link spectral efficiency. We propose an extension to conventional Adaptive Modulation and Coding (AMC) framework that incorporates perceptual quality awareness into link adaptation. In this framework, the decision metric is a Perceptual Quality Indicator (PQI) derived from the Structural Similarity Index Measure (SSIM). The receiver employs a Denoising Convolutional Neural Network (DnCNN) denoiser to enhance post-decoding image quality before feedback estimation. The resulting perceptual metric replaces the standard Channel Quality Indicator (CQI) in the AMC loop, enabling adaptation to maximize spectral efficiency while satisfying a perceptual-fidelity constraint. Experiments on a 5 G -compliant mmWave testbed demonstrate up to a twofold gain in spectral efficiency while maintaining perceptual fidelity, underscoring the potential of perception-optimized link adaptation.
Item Type: Papers in Conference Proceedings
Uncontrolled Keywords: 5G waveform; adaptive coding and modulation; experimental validation; mmWave; perceptual quality
Divisions: Faculty of Engineering and Natural Sciences > Academic programs > Electronics
Faculty of Engineering and Natural Sciences
Depositing User: Özgür Erçetin
Date Deposited: 26 Aug 2026 15:10
Last Modified: 26 Aug 2026 15:10
URI: https://research.sabanciuniv.edu/id/eprint/54255

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