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Capacity bounds of Low-Dense NOMA over Rayleigh fading channels without CSI

机译:没有CSI的瑞利衰落信道上低密度NOMA的容量边界

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Upper and lower bounds on capacity of low-dense code-domain NOMA were investigated in the context of 5G New Radio (5G-NR), under the worst hypothesis of no channel knowledge at the receiver, i.e. operation without channel state information (CSI). The impact of peculiar features of 5G-NR on capacity bounds of optimum receivers was investigated. The upper bound, defined as the system capacity with perfect CSI, and the lower bound corresponding to a pilot-based communication model, were found. These bounds indicated that the achievable rates of low-dense code-domain NOMA without CSI are lower, as expected, than those with perfect CSI, although the above gap vanishes to negligible values, when some of the system parameters, in particular speed of variation of the channel against symbol duration, number of simultaneous users, and system load, i.e. number of users vs. number of resource elements, favorably combine.
机译:在5G新无线电(5G-NR)的情况下,在接收机没有信道知识的最坏假设(即没有信道状态信息(CSI)的操作)的情况下,研究了低密度码域NOMA容量的上限和下限。研究了5G-NR的独特功能对最佳接收器容量范围的影响。找到上限(定义为具有完美CSI的系统容量)和下限(对应于基于飞行员的通信模型)。这些界限表明,不带CSI的低密度代码域NOMA的可实现率比具有理想CSI的低,可预期的是,尽管当某些系统参数(尤其是变化速度)时上述差距消失到可以忽略不计的值信道相对于符号持续时间,同时用户数和系统负载(即用户数与资源元素数)之间的关系最好进行组合。

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