Multi-Symbol Digital AirComp via Modulation Design and Power Adaptation

Fuente: arXiv
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Autori principali: Yan, Xiaojing, Razavikia, Saeed, Fischione, Carlo
Natura: Preprint
Pubblicazione: 2025
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author Yan, Xiaojing
Razavikia, Saeed
Fischione, Carlo
author_facet Yan, Xiaojing
Razavikia, Saeed
Fischione, Carlo
contents Recently, over-the-air computation (AirComp) leverages the superposition property of wireless channels to enable efficient function computation over a multiple access channel (MAC). However, existing digital AirComp methods either rely on single-symbol modulation, which limits flexibility and robustness, or on multi-symbol extensions that suffer from high complexity or approximation errors. To overcome these limitations, we propose a new multi-symbol modulation framework, termed sequential modulation for AirComp (SeMAC), which encodes each input into a sequence of symbols with distinct constellation diagrams across multiple time slots. This approach increases design flexibility and robustness against channel noise. Specifically, the modulation design is formulated as a non-convex optimization problem and efficiently solved through a successive convex approximation (SCA) combined with stochastic subgradient descent (SSD). For fixed modulation formats, we further develop SeMAC with power adaptation (SeMAC-PA) to adjusts transmit power and phase while preserving the modulation structure. Notably, numerical results show that SeMAC improves computation accuracy by up to 14 dB compared to the existing methods for computing nonlinear functions such as the product function.
format Preprint
id arxiv_https___arxiv_org_abs_2507_08670
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Multi-Symbol Digital AirComp via Modulation Design and Power Adaptation
Yan, Xiaojing
Razavikia, Saeed
Fischione, Carlo
Signal Processing
Recently, over-the-air computation (AirComp) leverages the superposition property of wireless channels to enable efficient function computation over a multiple access channel (MAC). However, existing digital AirComp methods either rely on single-symbol modulation, which limits flexibility and robustness, or on multi-symbol extensions that suffer from high complexity or approximation errors. To overcome these limitations, we propose a new multi-symbol modulation framework, termed sequential modulation for AirComp (SeMAC), which encodes each input into a sequence of symbols with distinct constellation diagrams across multiple time slots. This approach increases design flexibility and robustness against channel noise. Specifically, the modulation design is formulated as a non-convex optimization problem and efficiently solved through a successive convex approximation (SCA) combined with stochastic subgradient descent (SSD). For fixed modulation formats, we further develop SeMAC with power adaptation (SeMAC-PA) to adjusts transmit power and phase while preserving the modulation structure. Notably, numerical results show that SeMAC improves computation accuracy by up to 14 dB compared to the existing methods for computing nonlinear functions such as the product function.
title Multi-Symbol Digital AirComp via Modulation Design and Power Adaptation
topic Signal Processing
url https://arxiv.org/abs/2507.08670