论文标题

时空二-D通道编码非常低的潜伏性可靠MIMO传输

Spatiotemporal 2-D Channel Coding for Very Low Latency Reliable MIMO Transmission

论文作者

You, Xiaohu, Zhang, Chuan, Sheng, Bin, Huang, Yongming, Ji, Chen, Shen, Yifei, Zhou, Wenyue, Liu, Jian

论文摘要

为了充分支持垂直行业,5G及其相应的渠道编码有望满足不同应用的要求。但是,对于5G和5G(B5G)(例如URLLC)的应用,传输延迟必须比在EMBB中短得多。因此,所得的通道代码长度大大减少。在这种情况下,传统的1-D通道编码会受到性能降低的损失,并且无法以非常低的延迟提供强可靠性。为了删除这种瓶颈,迫切需要现有的1-D之外的新频道编码方案。通过充分利用大型MIMO系统的空间自由,本文致力于提出时空二维通道编码,以实现非常低的延迟可靠传输。对于非常短的时间域代码长度,$ n^{\ text {time}} = 16 $,$ 64 \ times 128 $ mimo系统采用了拟议的时空二维编码方案成功显示了$ 3 $ \,db绩效增长$ 3 $ \,DB性能增益在$ \ text {fer} = 10^{-3} $中,与1-A-AD CANDAIN相比。据注意,所提出的编码方案适用于不同的频道代码,并且具有很高的灵活性以适应差异方案。通过适当选择时间和空间域中的代码速率,代码长度和代码字数,建议的编码方案可以实现传输潜伏期和可靠性之间的良好权衡。

To fully support vertical industries, 5G and its corresponding channel coding are expected to meet requirements of different applications. However, for applications of 5G and beyond 5G (B5G) such as URLLC, the transmission latency is required to be much shorter than that in eMBB. Therefore, the resulting channel code length reduces drastically. In this case, the traditional 1-D channel coding suffers a lot from the performance degradation and fails to deliver strong reliability with very low latency. To remove this bottleneck, new channel coding scheme beyond the existing 1-D one is in urgent need. By making full use of the spacial freedom of massive MIMO systems, this paper devotes itself in proposing a spatiotemporal 2-D channel coding for very low latency reliable transmission. For a very short time-domain code length $N^{\text{time}}=16$, $64 \times 128$ MIMO system employing the proposed spatiotemporal 2-D coding scheme successfully shows more than $3$\,dB performance gain at $\text{FER}=10^{-3}$, compared to the 1-D time-domain channel coding. It is noted that the proposed coding scheme is suitable for different channel codes and enjoys high flexibility to adapt to difference scenarios. By appropriately selecting the code rate, code length, and the number of codewords in the time and space domains, the proposed coding scheme can achieve a good trade-off between the transmission latency and reliability.

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