arXiv · 2610.07682
Semantic Split Inference for Remote Modulation Recognition
Abstract
Remote automatic modulation recognition balances sensing-node complexity, reporting cost and accuracy. To address this trade-off, we propose channel-aware semantic split inference: a sensing node sends a semantic report over a noisy link and the edge server completes recognition. In our model, split depth and report length are independent design variables, with end-to-end training through the channel. We compare the resulting design against basic split placements, which run inference at the edge server or at the sensing node, and against a state-of-the-art collaborative scheme. We assess sensing-node model size, computation, latency and energy against recognition accuracy. We show that intermediate splits give the best accuracy-cost trade-off.
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Samer Lahoud, Kinda Khawam. 2026-10-06. Semantic Split Inference for Remote Modulation Recognition. https://arxiv.org/abs/2610.07682
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