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Communication

Impacts of Non-Uniform Source on BER for SSC NOMA (Part I): Optimal MAP Receiver’s Perspective

초록

영어

Lempel-Ziv coding is one of the most famous source coding schemes. The output of this source coding is usually a non-uniform code, which requires additional source coding, such as arithmetic coding, to reduce a redundancy. However, this additional source code increases complexity and decoding latency. Thus, this paper proposes the optimal maximum a-posteriori (MAP) receiver for non-uniform source non-orthogonal multiple access (NOMA) with symmetric superposition coding (SSC). First, we derive an analytical expression of the bit-error rate (BER) for non-uniform source NOMA with SSC. Then, Monte Carlo simulations demonstrate that the BER of the optimal MAP receiver for the non-uniform source improves slightly, compared to that of the conventional receiver for the uniform source. Moreover, we also show that the BER of an approximate analytical expression is in a good agreement with the BER of Monte Carlo simulation. As a result, the proposed optimal MAP receiver for non-uniform source could be a promising scheme for NOMA with SSC, to reduce complexity and decoding latency due to additional source coding.

목차

Abstract
1. Introduction
2. System and Channel Model
3. Derivation of BER of Optimal MAP Receiver for Non-Uniform Source NOMA with SSC
4. Numerical Results and Discussions
5. Conclusion
References

저자정보

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

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