论文标题
迁移率对无链路细胞无细胞的大规模MIMO系统的影响
Impact of Mobility on Downlink Cell-Free Massive MIMO Systems
论文作者
论文摘要
在本文中,我们分析了无细胞大量输入多重输出(CF-MMIMO)系统的可实现的下行链路频谱效率,这构成了通道老化(由用户移动性引起的)和PILOT污染的影响。我们考虑两种情况,一种情况下,用户设备(UES)依赖于访问点(APS)估算下行链路通道的下行链路飞行员,而UES使用统计通道状态信息(CSI)进行数据解码。为了进行比较,我们还考虑了细胞MMIMO,并在上述两种情况下随着通道老化和试点污染而得出其可实现的光谱效率。我们的结果表明,在CF-MIMO中,当最佳选择数据序列的长度以最大化光谱效率时,比统计CSI比统计CSI更可取。但是,在细胞MMIMO中,这两个方案之一都可以更好,具体取决于用户公平或总和频谱效率的优先级。此外,即使考虑到通道老化和试点污染的影响,CF-MIMO系统也通常超过细胞MMIMO。通过数值结果,我们说明了各种系统参数的效果,例如最大用户速度,上行链路/下行链路飞行员长度,数据持续时间,网络致密化,并为无细胞和细胞MMIMO系统之间的关键差异提供了有趣的见解。
In this paper, we analyze the achievable downlink spectral efficiency of cell-free massive multiple input multiple output (CF-mMIMO) systems, accounting for the effects of channel aging (caused by user mobility) and pilot contamination. We consider two cases, one where user equipments (UEs) rely on downlink pilots beamformed by the access points (APs) to estimate downlink channel, and another where UEs utilize statistical channel state information (CSI) for data decoding. For comparison, we also consider cellular mMIMO and derive its achievable spectral efficiency with channel aging and pilot contamination in the above two cases. Our results show that, in CF-mMIMO, downlink training is preferable over statistical CSI when the length of the data sequence is chosen optimally to maximize the spectral efficiency. In cellular mMIMO, however, either one of the two schemes may be better depending on whether user fairness or sum spectral efficiency is prioritized. Furthermore, the CF-mMIMO system generally outperforms cellular mMIMO even after accounting for the effects of channel aging and pilot contamination. Through numerical results, we illustrate the effect of various system parameters such as the maximum user velocity, uplink/downlink pilot lengths, data duration, network densification, and provide interesting insights into the key differences between cell-free and cellular mMIMO systems.