论文标题
MIMO多重访问通道的约束Riemannian非合并星座
Constrained Riemannian Noncoherent Constellations for the MIMO Multiple Access Channel
论文作者
论文摘要
我们考虑使用具有K用户的多访问通道(MAC)的多源星座的设计,每个天线都可以通过雷利块降低通道同时传输到配备N天线的接收器,当时没有通道状态信息(CSI)可用于发射器或接收器。在完整的场景中,相干时间至少为t> =(k+1)m,提出的星座设计标准基于Brehler和Varanasi得出的多源成对误差概率(PEP)的渐近表达。在非充实的多样性场景中,先前的PEP表达不再有效,提出的设计标准基于NGO和Yang最近提出的PEP的代理。尽管PEP表达及其界限或代理以前都被认为是优化的棘手,但在这项工作中,我们得出了它们各自的无约束梯度。这些梯度反过来又用于优化代表不同功率约束的不同riemannian歧管中提议的成本函数。特别是,除了标准的统一时空调制(USTM)外,我们考虑了更轻松的每个代码驱动力约束,从而对所谓的斜形歧管进行优化,并在所谓的痕量折线上进行优化。配备了这些理论工具,我们在符号错误率(SER)方面,在全能和非实现多样性的情况下为MIMO MAC设计了多元化和非实现多样性的多样性星座。
We consider the design of multiuser constellations for a multiple access channel (MAC) with K users, with M antennas each, that transmit simultaneously to a receiver equipped with N antennas through a Rayleigh block-fading channel, when no channel state information (CSI) is available to either the transmitter or the receiver. In full-diversity scenarios where the coherence time is at least T>= (K+1)M, the proposed constellation design criterion is based on the asymptotic expression of the multiuser pairwise error probability (PEP) derived by Brehler and Varanasi. In non-full diversity scenarios, for which the previous PEP expression is no longer valid, the proposed design criteria are based on proxies of the PEP recently proposed by Ngo and Yang. Although both the PEP expression and its bounds or proxies were previously considered intractable for optimization, in this work we derive their respective unconstrained gradients. These gradients are in turn used in the optimization of the proposed cost functions in different Riemannian manifolds representing different power constraints. In particular, in addition to the standard unitary space-time modulation (USTM) leading to optimization on the Grassmann manifold, we consider a more relaxed per-codeword power constraint leading to optimization on the so-called oblique manifold, and an average power constraint leading to optimization on the so-called trace manifold. Equipped with these theoretical tools, we design multiuser constellations for the MIMO MAC in full-diversity and non-full-diversity scenarios with state-of-the-art performance in terms of symbol error rate (SER).