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Asynchronous NOMA for Downlink Transmissions

机译:下行传输的异步NOMA

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In this letter, we propose a novel symbol-asynchronous non-orthogonal multiple access (ANOMA) scheme for downlink transmissions. First, ANOMA introduces an artificial symbol-offset between packets destined for different user equipment (UE) in order to reduce their mutual interference. Second, ANOMA adopts a pre-coding at the base station and a whitening-and-decomposing (WD) detection scheme at the receiving UE to simplify signal detection. With these two novel techniques, ANOMA can significantly enlarge the achievable rate region of the traditional non-orthogonal multiple access (NOMA). Moreover, the impact of pulse shape and symbol offset on the performance of ANOMA scheme are investigated in both Gaussian and Rayleigh block-fading channels. The numerical results show that ANOMA with precoding and WD detection outperforms asynchronous NOMA with successive interference cancellation detection, both outperform synchronous NOMA.
机译:在这封信中,我们为下行链路传输提出了一种新颖的符号异步非正交多址访问(ANOMA)方案。首先,ANOMA在发往不同用户设备(UE)的数据包之间引入了人为的符号偏移,以减少它们之间的相互干扰。其次,ANOMA在基站采用预编码,并在接收UE处采用白化分解(WD)检测方案,以简化信号检测。利用这两种新颖的技术,ANOMA可以显着扩大传统非正交多址访问(NOMA)的可实现速率区域。此外,在高斯和瑞利块衰落信道中研究了脉冲形状和符号偏移对ANOMA方案性能的影响。数值结果表明,具有预编码和WD检测的ANOMA优于具有连续干扰消除检测的异步NOMA,均优于同步NOMA。

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