Exploiting Semantic Communication for Non-Orthogonal Multiple Access
Xidong Mu, Yuanwei Liu

TL;DR
This paper introduces a semantics-empowered NOMA framework combining semantic communication for a far user and bit-based communication for a near user, optimizing resource use and performance over fading channels.
Contribution
It characterizes the semantic-versus-bit rate region in NOMA, proposes an opportunistic scheme for adaptive communication mode selection, and derives optimal policies for fading channels.
Findings
SemCom significantly improves F-user performance under power constraints.
Opportunistic scheme outperforms baseline SemCom or BitCom schemes.
Proposed method enhances NOMA performance in fading environments.
Abstract
A novel semantics-empowered two-user uplink non-orthogonal multiple access (NOMA) framework is proposed for resource efficiency enhancement. More particularly, a secondary far user (F-user) employs the semantic communication (SemCom) while a primary near user (N-user) employs the conventional bit-based communication (BitCom). The fundamental performance limit, namely semantic-versus-bit (SvB) rate region, of the proposed semantics-empowered NOMA framework is characterized. The equivalent SvB rate region achieved by the conventional BitCom-based NOMA is provided as the baseline scheme. It unveils that, compared to BitCom, SemCom can significantly improve the F-user's performance when its permitted transmit power is strictly capped, but may perform worse when its permitted transmit power is high. Guided by this result, the proposed semantics-empowered NOMA framework is investigated over…
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Taxonomy
TopicsAdvanced Wireless Communication Technologies · Wireless Communication Security Techniques · IoT Networks and Protocols
