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首页> 外文期刊>IEEE Transactions on Information Theory >Asymptotic Analysis of Spatially Correlated MIMO Multiple-Access Channels With Arbitrary Signaling Inputs for Joint and Separate Decoding
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Asymptotic Analysis of Spatially Correlated MIMO Multiple-Access Channels With Arbitrary Signaling Inputs for Joint and Separate Decoding

机译:具有联合和独立解码的任意信号输入的空间相关MIMO多路访问信道的渐近分析

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摘要

While the capacity of a single-user, point-to-point, multiple-input multiple-output (MIMO) channel has been well known, the achievable capacity of a MIMO channel in the presence of other co-channel users is much less understood. One such important scenario is the multiple-access (MA) channel where communication occurs from many uncoordinated mobile users to a common base station receiver (i.e., multipoint-to-point). Unlike previous studies whose emphases were on the idealized spatially uncorrelated channels with Gaussian signaling inputs from users, this paper derives a general analytical expression for the asymptotic (in the sense of large-system limit) sum-rate of a MIMO-MA system where the transmitters and the receiver can have different spatial correlations, and the users' inputs are not necessarily Gaussian. In addition to the sum-rate formula that assumes optimal joint decoding at the base station, we also derive the asymptotic sum-rate of a more practical system which performs separate decoding (multiuser detection followed by a bank of temporal error-correction decoders). Our analytic formulae are important in that they reveal the sum-rate one's system can achieve given the spatial correlation structures at the transmitters and receiver, and the input signal distributions. For special cases that users are homogeneous or users have Gaussian inputs, our results degenerate to previously published results. Furthermore, through computer simulations, we see that the proposed asymptotic solution gives good estimates for the ergodic sum-rate of the systems even with only a few antenna elements at each transmitter and receiver
机译:尽管单用户,点对点,多输入多输出(MIMO)信道的容量是众所周知的,但在存在其他同信道用户的情况下,MIMO信道可实现的容量却鲜为人知。这样的重要场景之一是多路访问(MA)信道,其中从许多未协调的移动用户到公用基站接收机(即,多点对点)进行通信。与先前的研究重点放在具有用户高斯信号输入的理想空间不相关信道上的先前研究不同,本文得出了MIMO-MA系统渐近(在大系统极限的意义上)求和率的一般解析表达式。发射器和接收器可以具有不同的空间相关性,并且用户的输入不一定是高斯的。除了假定基站进行最佳联合解码的求和速率公式外,我们还推导了更实用的系统的渐近求和速率,该系统执行单独的解码(多用户检测,后跟一堆时间纠错解码器)。我们的分析公式很重要,因为它们揭示了给定系统的发送器和接收器处的空间相关结构以及输入信号分布可以实现的总速率。对于用户同质或用户具有高斯输入的特殊情况,我们的结果会退化为先前发布的结果。此外,通过计算机仿真,我们看到,即使每个发射器和接收器只有几个天线元件,所提出的渐近解也可以很好地估计系统的遍历总速率。

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