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NON-ORTHOGONAL MULTIPLE ACCESS FOR UPLINK DATA TRANSMISSION FOR 5G OR OTHER NEXT GENERATION NETWORK

机译:用于5G或其他下一代网络的上行链路数据传输的非正交多访问

摘要

The gains with non-orthogonal multiple access (NOMA) for uplink data transmissions can be high when chosen codes are orthogonal. However, when codes are non-orthogonal, the gains can be low. NOMA can be used when there is more than one mobile device using the same resources. Since orthogonal codes cannot be possible for every length, codes which have low cross-correlation properties can be used. However, when there are a large number of mobile devices using the same resources, the cross-correlation between the codes can cause interference to the mobile devices. Reducing the gains of a NOMA system can reduce the overall throughput. Thus, transmitting data on the same resources in a NOMA can occur in spite of the interference to the UEs transmitting data on the same resources. Therefore, a non-orthogonal multiple access design for a 5G network can mitigate interference.
机译:当所选择的代码正交时,用于上行链路数据传输的非正交多次访问(NOMA)的增益可以很高。但是,当代码是非正交的时,增益可能很低。当使用相同资源有多个移动设备时,可以使用NOMA。由于每个长度不能进行正交码,因此可以使用具有低互相关性的代码。然而,当使用相同资源有大量的移动设备时,代码之间的互相关可以对移动设备产生干扰。降低NOMM系统的收益可以降低整体吞吐量。因此,尽管对在相同资源上发送数据的UE发送数据,但是可以发生关于NOMA中相同资源的发送数据。因此,用于5G网络的非正交多访问设计可以减轻干扰。

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