Abstract:
Non-orthogonal multiple access (NOMA) as a promising technology, can achieve enhanced connectivity and spectral efficiency. However, the asymmetric channels in uplink NOM...Show MoreMetadata
Abstract:
Non-orthogonal multiple access (NOMA) as a promising technology, can achieve enhanced connectivity and spectral efficiency. However, the asymmetric channels in uplink NOMA systems can bring distinct uncertainty of the bit error rate (BER) and throughput performances to the users. To address this problem, an asymmetric adaptive modulation (AAM) framework for uplink NOMA systems is introduced in this paper. We first derive the closed-form BER expressions for uplink NOMA systems, then we propose a principle for reducing the performance uncertainty. Finally, we develop an AAM algorithm for uplink NOMA systems by studying the closed-form BER expressions. Numerical results demonstrate the correctness of the BER expressions we derived, and show that our AAM algorithm outperforms the benchmark in terms of the system sum throughput.
Published in: IEEE Transactions on Communications ( Volume: 69, Issue: 11, November 2021)
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- IEEE Keywords
- Index Terms
- Non-orthogonal Multiple Access ,
- Non-orthogonal Multiple Access System ,
- Asymmetric Modulation ,
- Numerical Results ,
- Bit Error Rate ,
- Multiple Access ,
- Spectral Efficiency ,
- Bit Error ,
- Bit Error Rate Performance ,
- Throughput Performance ,
- Signal-to-noise ,
- Base Station ,
- Boundary Value ,
- Noise Power ,
- Boundary Effects ,
- Modulation Scheme ,
- Fading Channel ,
- Channel Coefficients ,
- Modulation Technique ,
- Signal-to-interference-plus-noise Ratio ,
- Average Signal-to-noise Ratio ,
- Rayleigh Fading Channel ,
- Signal-to-noise Ratio Threshold ,
- Constellation Points ,
- Average Bit Error Rate ,
- User Pairing ,
- User Fairness ,
- Signal-to-noise Ratio Increases ,
- Block Error Rate ,
- Inter-user Interference
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Non-orthogonal Multiple Access ,
- Non-orthogonal Multiple Access System ,
- Asymmetric Modulation ,
- Numerical Results ,
- Bit Error Rate ,
- Multiple Access ,
- Spectral Efficiency ,
- Bit Error ,
- Bit Error Rate Performance ,
- Throughput Performance ,
- Signal-to-noise ,
- Base Station ,
- Boundary Value ,
- Noise Power ,
- Boundary Effects ,
- Modulation Scheme ,
- Fading Channel ,
- Channel Coefficients ,
- Modulation Technique ,
- Signal-to-interference-plus-noise Ratio ,
- Average Signal-to-noise Ratio ,
- Rayleigh Fading Channel ,
- Signal-to-noise Ratio Threshold ,
- Constellation Points ,
- Average Bit Error Rate ,
- User Pairing ,
- User Fairness ,
- Signal-to-noise Ratio Increases ,
- Block Error Rate ,
- Inter-user Interference
- Author Keywords