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On the power allocation of non-orthogonal multiple access for 5G wireless networks

机译:关于5G无线网络非正交多址接入的功率分配

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This paper addresses the power allocation issue in non-orthogonal multiple access (NOMA) systems. In NOMA, multiple paired users can simultaneously utilize the frequency bands of each other such that the message signals of all these users are superimposed by the transmitter by allocating different powers to all users. As the paired users communicate over the same frequency band, high amount of interference is faced by them. Thus, some paired users perform successive interference cancellation to decode and cancel the signals of other users while some users recover their signals by simply treating signals of other users as noise. Inefficient power allocation may increase the interference significantly, which causes degradation in data recovery at the user ends. We propose a novel power allocation strategy that can optimize the system ergodic sum capacity while minimizing the mutual interference between the paired users. It is shown through simulations that the proposed scheme outperforms conventional power allocation in terms of bit error rates at the user ends with negligible effect on the system ergodic sum capacity.
机译:本文解决了非正交多路访问(NOMA)系统中的功率分配问题。在NOMA中,多个成对的用户可以同时利用彼此的频带,从而通过为所有用户分配不同的功率,发射机可以叠加所有这些用户的消息信号。当配对的用户在同一频带上进行通信时,他们将面临大量干扰。因此,一些成对的用户执行连续的干扰消除以解码和消除其他用户的信号,同时一些用户通过简单地将其他用户的信号视为噪声来恢复其信号。无效的功率分配可能会显着增加干扰,从而导致用户端数据恢复性能下降。我们提出了一种新颖的功率分配策略,该策略可以优化系统遍历求和能力,同时最大程度降低配对用户之间的相互干扰。通过仿真表明,该方案在用户端的误码率方面优于传统的功率分配,而对系统遍历总容量的影响可忽略不计。

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