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Design and Analysis of Probabilistic Shaping Scheme for Uplink Nonorthogonal Multiple Access Systems

机译:上行链路非正交多址系统概率整形方案的设计与分析

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Probabilistic shaping (PS) combined with bipolar amplitude shift keying modulation is a promising transmission scheme to increase spectral efficiency. Different from the existing design of the point to point communications, we propose a PS-based uplink nonorthogonal multiple access (NOMA) scheme for fading channels to support multiple connections simultaneously, where successive interference cancellation (SIC)-based maximum a posterior (MAP) detection is implemented at the receiver. To exploit the shaping gain for each user, we first theoretically analyze the ergodic channel capacity and the constellation constrained (CC) capacity with discrete-constellation inputs, respectively. And then, a multi-step optimization scheme for maximizing the ergodic CC capacity is proposed to obtain the optimal probability mass function (PMF) of these input signals. The order of optimization is inverse to the SIC decoding order so that for each specific user, the remaining multiuser interference is calculated based on the optimal PMF of the later decoded users. Furthermore, based on this non-equiprobable transmission scheme, the closed-form pairwise error probability expressions for each user are obtained for the first time. Finally, compared with the uniform scheme, the simulations show that the proposed PS NOMA strategies achieve more than 1 dB gain in terms of the error performance.
机译:概率整形(PS)与双极幅度移位键控调制组合是一种有前途的传输方案,以提高光谱效率。与点对点通信的现有设计不同,我们提出了一种基于PS的上行链路非正交多址(NOMA)方案,用于同时支持多个连接,其中连续干扰消除(SIC)最大的后(MAP)检测在接收器处实现。为了利用每个用户的成形增益,我们首先使用离散的星座输入分析ergodic信道容量和星座约束(CC)容量。然后,提出了一种用于最大化ergodic CC容量的多步优优化方案,以获得这些输入信号的最佳概率质量功能(PMF)。优化顺序与SiC解码顺序相反,使得对于每个特定用户,基于稍后解码的用户的最佳PMF来计算剩余的多用户干扰。此外,基于该非设备传输方案,首次获得每个用户的闭合成对误差概率表达式。最后,与统一方案相比,模拟表明,所提出的PS NOMMS策略在误差性能方面取得了超过1 dB的增益。

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