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Lattice Partition Multiple Access: A New Method of Downlink Non-Orthogonal Multiuser Transmissions

机译:格分区多路访问:一种下行非正交多用户传输的新方法

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In this paper, we propose a new downlink non-orthogonal multiuser superposition transmission scheme for future 5G cellular networks, which we refer to as the lattice partition multiple access (LPMA). In this proposed design, the base station transmits multilevel lattice codes for multiple users. Each user's code level corresponds to a distinct prime and is weighted by a product of all distinct primes of the other users excluding its own. Due to the structural property of lattice codes, each user can cancel out the interference from the other code levels by using the modulo lattice operation in a successive/parallel manner. LPMA can provide better user fairness in symmctrical broadcast channels, compared with non- orthogonal multiple access (NOMA). We demonstrate that the proposed LPMA shows a clear throughput enhancement over the current NOMA scheme.
机译:在本文中,我们为未来的5G蜂窝网络提出了一种新的下行链路非正交多用户叠加传输方案,我们将该方案称为晶格划分多址(LPMA)。在该提出的设计中,基站为多个用户发送多级晶格码。每个用户的代码级别对应于一个不同的素数,并由其他用户(不包括其自身)的所有不同素数的乘积加权。由于格码的结构特性,每个用户可以通过以连续/并行的方式使用模格运算来消除其他码级的干扰。与非正交多址访问(NOMA)相比,LPMA可以在对称广播信道中提供更好的用户公平性。我们证明,提出的LPMA在当前的NOMA方案上显示了明显的吞吐量增强。

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