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BER-Driven Semantic Resilience and Receiver-Side Recovery for Text Communication
ID:54 View protection:Participant Only Updated time:2026-07-29 15:59:23 Views:20 Online

Start Time:2026-07-31 12:10

Duration:15min

Session:[S1] 5G and beyond Wireless Networks [S1-4] 5G and beyond Wireless Networks

Abstract
Semantic communication shifts the design objective of communication systems from exact bit reconstruction toward the preservation of meaning and receiver-side utility. This shift is particularly critical in scenarios where small bit-level perturbations can alter numbers, negations, or operational commands, transforming a message while maintaining high lexical similarity. This paper proposes a Bit Error Rate (BER)-driven semantic resilience framework for the controlled evaluation of text-based communication. The framework models the transmission pipeline from binary encoding to channel corruption, decoding, and optional receiver-side semantic recovery using Large Language Models (LLMs). We introduce a multi-level evaluation methodology combining Word Error Rate (WER), embedding-based Semantic Textual Similarity (STS), and Semantic Textual Similarity Gain (STS Gain). Unlike conventional purely bit-oriented approaches, the proposed protocol explicitly evaluates the trade-off between exact lexical reconstruction and semantic robustness. The results provide a reproducible testbed for benchmarking semantic recovery strategies under varying BER conditions.
Keywords
Semantic Communication,Text Transmission,Bit Error Rate,Receiver-Side Recovery,Word Error Rate,Sentence-BERT,6G
Speaker
David Panebianco
University of Catania

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Important Dates
  • Conference date

    07-30

    2026

    -

    08-01

    2026

  • 07-28 2026

    Draft paper submission deadline

  • 07-28 2026

    Registration deadline

Sponsored By

The United Societies of Science

Organized By

Kongunadu College of Engineering and Technology

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