论文标题
异步无细胞的大巨大MIMO,速率分解
Asynchronous Cell-Free Massive MIMO With Rate-Splitting
论文作者
论文摘要
在具有分布式和低成本访问点的实用无单元(CF)大量多输入多输出(MIMO)网络中,信号的异步到达用户设备会增加多用户干扰,从而降低了系统性能。同时,利用通用和私人消息传输的速率分解(RS)已证明可以提供相当大的光谱效率(SE)提高(SE)及其针对渠道状态信息(CSI)缺陷的鲁棒性。首先分析CF大量MIMO系统的信号性能,以捕获收发器的传播延迟和振荡器阶段的关节效应的异步接收。考虑到由异步相和试点污染引起的不完善的CSI,我们得出了新颖和封闭形式的下行链路SE表达式,以表征分别采用相干和非氧化数据传输方案的RS辅助和基于RS的非RS系统的性能。此外,我们为通用消息的鲁棒编码设计为优化问题,以最大化常见消息的最小单个SE。为了解决设计问题的非跨性别性,提出了一种分分方法来最佳解决该问题。仿真结果表明,异步接收确实会破坏飞行员的正交性和相干数据传输,从而导致系统性能差。此外,由于CF大量的MIMO系统的均匀覆盖范围,RS具有简单的低复杂性预言,对于通过私人预言的相等比例获得获得的常见消息,能够实现实质性的下行链接总和的增长,而在某些极端情况下,在某些极端情况下表现出了强大的预编码对常见信息的应用。
In practical cell-free (CF) massive multiple-input multiple-output (MIMO) networks with distributed and low-cost access points, the asynchronous arrival of signals at the user equipments increases multi-user interference that degrades the system performance. Meanwhile, rate-splitting (RS), exploiting the transmission of both common and private messages, has demonstrated to offer considerable spectral efficiency (SE) improvements and its robustness against channel state information (CSI) imperfection. The signal performance of a CF massive MIMO system is first analyzed for asynchronous reception capturing the joint effects of propagation delays and oscillator phases of transceivers. Taking into account the imperfect CSI caused by asynchronous phases and pilot contamination, we derive novel and closed-form downlink SE expressions for characterizing the performance of both the RS-assisted and conventional non-RS-based systems adopting coherent and non-coherent data transmission schemes, respectively. Moreover, we formulate the design of robust precoding for the common messages as an optimization problem that maximizes the minimum individual SE of the common message. To address the non-convexity of the design problem, a bisection method is proposed to solve the problem optimally. Simulation results show that asynchronous reception indeed destroys both the orthogonality of the pilots and the coherent data transmission resulting in poor system performance. Besides, thanks to the uniform coverage properties of CF massive MIMO systems, RS with a simple low-complexity precoding for the common message obtained by the equal ratio sum of the private precoding is able to achieve substantial downlink sum SE gains, while the application of robust precoding to the common message is shown to be useful in some extreme cases, e.g., serious oscillator mismatch and unknown delay phase.