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NOMA Versus OMA in Finite Blocklength Regime: Link-Layer Rate Performance

机译:NOMA与OMA有限块标度:链接层速率性能

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摘要

In this article, we investigate the latency performance of non-orthogonal multiple access (NOMA) and orthogonal multiple access (OMA) technologies in finite blocklength regime. In the comparative study, we derive the achievable effective capacity of two-user NOMA and its OMA counterpart under delay quality-of-service constraints. We then obtain closed-form expressions for the achievable effective capacity of the weak and strong users in both scenarios considering transmissions over Rayleigh fading channels. Numerical results are provided. In particular, it is shown that at low signal-to-noise ratios (SNRs), the OMA user with better channel condition outperforms both NOMA users. We also evaluate the impact of fixed power allocation scheme on the achievable effective capacity of two-user NOMA. The comparative analysis of the total link-layer rate shows that at high SNRs, the total link-layer rate of NOMA with finite blocklength outperforms the one of OMA when the delay exponent is loose.
机译:在本文中,我们调查有限块标体中非正交多址(NOMA)和正交多址(OMA)技术的延迟性能。在比较研究中,我们在延迟延迟延时的服务限制下获得了两用户NOMA及其OMA对应物的可实现有效能力。然后,我们在考虑瑞利衰落通道上的传输中,在两种情况下获得闭合和强用户的可实现有效容量的封闭式表达。提供了数值结果。特别地,示出了在低信噪比(SNR)处,具有更好信道条件的OMA用户优于NOMA用户。我们还评估了固定功率分配方案对两个用户NOMA可实现的有效容量的影响。总线层速率的比较分析表明,在高SNR时,NOMA的总链路层速率与有限块长度优于OMA之一,当延迟指数松动时。

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