下行NOMA中的功率分配与星座选择

Estela Carmona Cejudo, Huiling Zhu, Osama Alluhaibi
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引用次数: 30

摘要

在非正交多址(NOMA)中,不同用户的信号被独立编码和调制,然后在传输前在功率域进行叠加。因此,选择合适的功率分配因子(PAF)和发射星座组合是提高系统性能的关键。这项工作的目的是开发一种工具,用于自适应地选择合适的PAF和传输星座,以增强系统数据速率,给定一些需要共同考虑的个人用户误码率(BER)约束。为此,推导并计算了解析误码率(BEP)表达式。这是对NOMA系统的误码率进行分析评估的首次尝试。为了提出MCS和PAF的最佳组合,对这些表达式进行了评价。研究了在选择发射星座和PAF的特定组合时所涉及的权衡。此外,数值计算还证明了近用户可达到的有效效率受到远用户有效效率的影响。使用BEP表达式导出了PAF和发射星座的合适组合的查找表,重点是在给定的误码率约束下提高两个用户的系统数据速率。
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On the Power Allocation and Constellation Selection in Downlink NOMA
In non-orthogonal multiple access (NOMA), signals of different users are independently encoded and modulated, then superposed in the power domain before transmission. The choice of a suitable combination of power allocation factor (PAF) and transmit constellations is hence critical to enhance the system performance. The aim of this work is to develop a tool for adaptively selecting a suitable PAF and transmit constellations for an enhanced system data rate, given some individual user bit error rate (BER) constraints that need to be jointly considered. For this purpose, analytical bit error probability (BEP) expressions are derived and evaluated. This is the first attempt to analytically evaluate the BER in NOMA systems. The expressions are evaluated in order to propose the best combination of MCS and PAF. The trade-offs involved in selecting a certain combination of transmit constellations and PAF are also investigated. Moreover, numerical evaluations prove that the attainable BEP at the near user is affected by that of the far user. Look-up tables of suitable combinations of PAF and transmit constellations are derived using the BEP expressions, with a focus on enhancing the system data rate for some given BER constraints at both users.
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