论文标题

容量最佳编码通用MU-MIMO

Capacity Optimal Coded Generalized MU-MIMO

论文作者

Chi, Yuhao, Liu, Lei, Song, Guanghui, Li, Ying, Guan, Yong Liang, Yuen, Chau

论文摘要

随着未来通信方案的并发症,多用户多输入多输出(MU-MIMO)的大多数传统信号处理技术变得不可靠,这些技术是基于理想的假设而设计的,例如高斯信号传导和独立分布式(IID)通道矩阵。结果,本文考虑了具有更一般假设的广义MU-MIMO(GMU-MIMO)系统,即任意固定的输入分布和一般不变的通道矩阵。但是,在编码的限制下,仍然没有准确的容量分析和能力最佳收发器,GMU-MIMO的实际复杂性。为了解决这些问题,受复制方法的启发,通过使用著名的相互信息和最小均方误差(MMSE)引理(MMSE)引理和正交/矢量近似信息的MMSE访问性来计算具有固定输入分布的编码GMU-MIMO的约束总和容量。然后,提出了一个最佳的多源OAMP/VAMP接收器,其可实现的速率被证明等于约束的总和容量。此外,为多用户代码的设计原理提供了多用户/鞋面的设计原理,该设计原理基于一种实用的多用户低密度奇偶校验检查(MU-LDPC)代码。数值结果表明,具有多用户OAMP/VAMP的提议的MU-LDPC代码的有限长度性能距离约束总和容量约2 dB,并且胜过现有最先进方法的总和。

With the complication of future communication scenarios, most conventional signal processing technologies of multi-user multiple-input multiple-output (MU-MIMO) become unreliable, which are designed based on ideal assumptions, such as Gaussian signaling and independent identically distributed (IID) channel matrices. As a result, this paper considers a generalized MU-MIMO (GMU-MIMO) system with more general assumptions, i.e., arbitrarily fixed input distributions, and general unitarily-invariant channel matrices. However, there is still no accurate capacity analysis and capacity optimal transceiver with practical complexity for GMU-MIMO under the constraint of coding. To address these issues, inspired by the replica method, the constrained sum capacity of coded GMU-MIMO with fixed input distribution is calculated by using the celebrated mutual information and minimum mean-square error (MMSE) lemma and the MMSE optimality of orthogonal/vector approximate message passing (OAMP/VAMP). Then, a capacity optimal multiuser OAMP/VAMP receiver is proposed, whose achievable rate is proved to be equal to the constrained sum capacity. Moreover, a design principle of multi-user codes is presented for the multiuser OAMP/VAMP, based on which a kind of practical multi-user low-density parity-check (MU-LDPC) code is designed. Numerical results show that finite-length performances of the proposed MU-LDPC codes with multi-user OAMP/VAMP are about 2 dB away from the constrained sum capacity and outperform those of the existing state-of-art methods.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源