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논문검색

Achievable Power Allocation Interval of Rate-lossless non-SIC NOMA for Asymmetric 2PAM

원문정보

초록

영어

In the Internet-of-Things (IoT) and artificial intelligence (AI), complete implementations are dependent largely on the speed of the fifth generation (5G) networks. However, successive interference cancellation (SIC) in non-orthogonal multiple access (NOMA) of the 5G mobile networks can be still decoding latency and receiver complexity in the conventional SIC NOMA scheme. Thus, in order to reduce latency and complexity of inherent SIC in conventional SIC NOMA schemes, we propose a rate-lossless non-SIC NOMA scheme. First, we derive the closed-form expression for the achievable data rate of the asymmetric 2PAM non-SIC NOMA, i.e., without SIC. Second, the exact achievable power allocation interval of this rate-lossless non-SIC NOMA scheme is also derived. Then it is shown that over the derived achievable power allocation interval of user-fairness, rate-lossless non-SIC NOMA can be implemented. As a result, the asymmetric 2PAM could be a promising modulation scheme for rate-lossless non-SIC NOMA of 5G networks, under user-fairness.

목차

Abstract
1. Introduction
2. System and Channel Model
3. Review of Achievable Data Rate for SIC NOMA
4. Derivation of Achievable Data Rate for non-SIC NOMA
5. Derivation of Achievable Power Allocation Interval
6. Numerical Results and Discussions
7. Conclusion
References

저자정보

  • Kyuhyuk Chung Professor, Department of Software Science, Dankook University, Korea

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