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Space-time multiplexing for mimo multiuser downlink channels

机译:mimo多用户下行链路信道的时空复用

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摘要

In this paper, we study the downlink of a multiuser system, in which antenna arrays are employed at both the transmitter (base station) and the receivers (clients). A space-time modulation technique that can be seen as two-dimensional spreading is introduced. It provides full transmit diversity for every user, and accommodates Nt times the number of users as a single-antenna code-division multi-access (CDMA) scheme, where Nt is the number of transmit antennas. Thus multiple access is provided through spatial as well as code dimensions. In addition, the scheme forms groups of users that are orthogonal to each other. This feature translates into simplified detection strategies without loss of performance. The main detector structure of interest is a two-stage interference canceller because of its low complexity compared to other joint detectors. We will demonstrate that in conjunction with an unequal power allocation scheme, this receiver provides full diversity and suffers from only a small performance loss compared to the full-complexity maximum likelihood (ML) receiver. In a single-user multiple antenna system, the same spreading scheme and unequal power allocation yields a new approach to designing full-rate, full-diversity space-time codes having good performance with successive interference cancellers
机译:在本文中,我们研究了多用户系统的下行链路,在该系统中,发射机(基站)和接收机(客户端)都使用天线阵列。介绍了一种可以被视为二维扩展的空时调制技术。它为每个用户提供了完整的发射分集,并且是单天线码分多址(CDMA)方案的Nt倍用户数,其中Nt是发射天线的数量。因此,通过空间和代码维度提供了多路访问。另外,该方案形成了彼此正交的用户组。此功能可以简化检测策略而不会降低性能。感兴趣的主要探测器结构是两级干扰消除器,因为与其他联合探测器相比,它的复杂度较低。我们将证明,结合不平等的功率分配方案,该接收器可提供全分集,并且与全复杂度最大似然(ML)接收器相比仅遭受很小的性能损失。在单用户多天线系统中,相同的扩展方案和不相等的功率分配产生了一种设计具有连续干扰消除器的良好性能的全速率,全分集时空码的新方法。

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