论文标题
在多细胞大型MIMO系统中使用非唯一解码的速率分解
On Rate-Splitting With Non-unique Decoding In Multi-cell Massive MIMO Systems
论文作者
论文摘要
我们考虑了由于试点污染而导致的渐近率饱和度,多细胞巨大的MIMO系统的下行链路。与将试点污染干扰视为噪声(TIN),我们研究了解码试点污染干扰的性能。我们将飞行员共享用户建模为干扰渠道(IC),并研究基于速率分解(RS)部分解码此干扰的方案的性能,并将其性能与基于同时基于独特的独特解码(SD)或非唯一解码(SND)的同时解码(SD)分解干扰的方案。对于RS,我们非独特地解码了试点污染干扰的每一层,并使用一个常见的电源分裂系数。此外,我们为该RS计划建立了一个可实现的区域。解决基于线性编程(LP)的最大对称速率分配问题,我们表明,对于具有空间相关/不相关的通道和实用数量的BS天线的零功能(ZF),RS的光谱效率明显高于TIN,SD和SD和SD和SND。此外,我们从数值上检查了增加天线频道相关性的影响,用户数量以及阴影褪色的程度。在所有情况下,我们都表明RS比TIN,SD和SND保持显着增益。
We consider the downlink of a multi-cell massive MIMO system suffering from asymptotic rate saturation due to pilot contamination. As opposed to treating pilot contamination interference as noise (TIN), we study the performance of decoding the pilot contamination interference. We model pilot-sharing users as an interference channel (IC) and study the performance of schemes that decode this interference partially based on rate-splitting (RS), and compare the performance to schemes that decode the interference in its entirety based on simultaneous unique decoding (SD) or non-unique decoding (SND). For RS, we non-uniquely decode each layer of the pilot contamination interference and use one common power splitting coefficient per IC. Additionally, we establish an achievable region for this RS scheme. Solving a maximum symmetric rate allocation problem based on linear programming (LP), we show that for zero-forcing (ZF) with spatially correlated/uncorrelated channels and with a practical number of BS antennas, RS achieves significantly higher spectral efficiencies than TIN, SD and SND. Furthermore, we numerically examine the impact of increasing the correlation of the channel across antennas, the number of users as well as the degree of shadow fading. In all cases, we show that RS maintains significant gain over TIN, SD and SND.