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Unsourced Random Access With Uncoupled Compressive Sensing and Forward Error Correction
DOI:10.1109/TVT.2024.3471653.png)
Abstract
En 中文
In this paper, we investigate the unsourced random access (URA) under Rayleigh fading model. The proposed URA scheme incorporates uncoupled compressive sensing with forward error correction. It avoids the challenges of more effective tree decoder design and alleviates the issue of performance deterioration caused by under-determined multi-user detection model under small antenna number. Moreover, amplitude modulation (AM) is adopted in this work as a power division method to improve efficiency, carrying more information without modifications on codebook. Approximate message passing (AMP) algorithm with post variance fusion is designed to demodulate AM with large fading effect and improve estimation precision. Numerical results are illustrated by fair comparisons with state-of-the-arts.
Keywords:
Decoding
Fading channels
Multiuser detection
Iterative decoding
Vectors
Receivers
System performance
Estimation
Demodulation
Amplitude modulation
approximate message passing
forward error correction
power division
uncoupled URA
unsourced random access (URA)
unsourced random access (URA)
Journal
IF:
7.1
Papers:
1.8W
Citations:
6.6W

