论文标题
具有异步接收的无细胞大规模MIMO系统的性能分析
Performance Analysis of Cell-Free Massive MIMO Systems with Asynchronous Reception
论文作者
论文摘要
无细胞(CF)大量多输入多输出(MIMO)被认为是实现最终性能极限的有前途的技术。但是,由于其分布式体系结构和低成本访问点(AP),在用户设备(UES)接收的信号很可能是异步的。在本文中,我们研究了具有异步接收的CF大量MIMO系统的性能,包括延迟和振荡器阶段的效果。考虑到由相异步和试点污染引起的不完善的通道状态信息,我们分别获得了新颖和封闭形式的下行链路光谱效率(SE)表达式(SE)表达式,并分别具有相干和非辅助数据传输方案。仿真结果表明,异步接收会破坏飞行员的正交性和数据的连贯传输,从而导致系统性能差。此外,对于CF大量MIMO系统,获得高度准确的延迟阶段是实质性的,以实现连贯的传输增益。此外,UES的振荡器阶段对SE的影响比AP的振荡阶段更大,因为通过增加天线数量可以大大减少后者。
Cell-free (CF) massive multiple-input multiple-output (MIMO) is considered as a promising technology for achieving the ultimate performance limit. However, due to its distributed architecture and low-cost access points (APs), the signals received at user equipments (UEs) are most likely asynchronous. In this paper, we investigate the performance of CF massive MIMO systems with asynchronous reception, including both effects of delay and oscillator phases. Taking into account the imperfect channel state information caused by phase asynchronization and pilot contamination, we obtain novel and closed-form downlink spectral efficiency (SE) expressions with coherent and non-coherent data transmission schemes, respectively. Simulation results show that asynchronous reception destroys the orthogonality of pilots and coherent transmission of data, and thus results in poor system performance. In addition, getting a highly accurate delay phase is substantial for CF massive MIMO systems to achieve coherent transmission gain. Moreover, the oscillator phase of UEs has a larger effect on SE than that of the APs, because the latter can be significantly reduced by increasing the number of antennas.