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Optimal Linear Precoders for MIMO Wireless Correlated Channels With Nonzero Mean in Space-Time Coded Systems

机译:空时编码系统中具有非零均值的MIMO无线相关信道的最佳线性预编码器

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This paper proposes linear precoder designs exploiting statistical channel knowledge at the transmitter in a multiple-input multiple-output (MIMO) wireless system. The paper focuses on channel statistics, since obtaining real-time channel state information at the transmitter can be difficult due to channel dynamics. The considered channel statistics consist of the channel mean and transmit antenna correlation. The receiver is assumed to know the instantaneous channel precisely. The precoder operates along with a space-time block code (STBC) and aims to minimize the Chernoff bound on the pairwise error probability (PEP) between a pair of block codewords, averaged over channel fading statistics. Two PEP design criteria are studied--minimum distance and average distance. The optimal precoder with an orthogonal STBC is established, using a convex optimization framework. Different relaxations then extend the solution to systems with nonorthogonal STBCs. In both cases, the precoder is a function of both the channel mean and the transmit correlation. A linear precoder acts as a combination of a multimode beamformer and an input shaping matrix, matching each side to the channel and to the input signal structure, respectively. Both the optimal beam direction and the power of each mode, obtained via a dynamic water-filling process, depend on the signal-to-noise ratio (SNR). Asymptotic analyses of the results reveal that, for all STBCs, the precoder approaches a single-mode beamformer on the dominant right singular vector of the channel mean as the channel K factor increases. On the other hand, as the SNR increases, it approaches an equipower multiple-mode beamformer, matched to the eigenvectors of the transmit correlation. Design examples and numerical simulation results for both orthogonal and nonorthogonal STBC precoding solutions are provided, illustrating the precoding array gain.
机译:本文提出了一种线性预编码器设计,该设计利用了多输入多输出(MIMO)无线系统中发射机处的统计信道知识。本文着重于信道统计,因为由于信道动态性,很难在发射机处获得实时信道状态信息。所考虑的信道统计信息包括信道平均值和发射天线相关性。假定接收机精确地知道瞬时信道。预编码器与空时分组码(STBC)一起工作,旨在使在通道衰落统计上平均的一对分组码字之间的成对错误概率(PEP)上的切尔诺夫边界最小。研究了两个PEP设计标准-最小距离和平均距离。使用凸优化框架,建立具有正交STBC的最优预编码器。然后,不同的松弛将解扩展到具有非正交STBC的系统。在两种情况下,预编码器都是信道均值和发射相关性的函数。线性预编码器充当多模波束形成器和输入整形矩阵的组合,分别将每一侧与通道和输入信号结构进行匹配。通过动态注水过程获得的最佳波束方向和每种模式的功率均取决于信噪比(SNR)。结果的渐近分析显示,对于所有STBC,随着通道K因子的增加,预编码器在通道均值的显性右奇异矢量上接近单模波束形成器。另一方面,随着SNR的增加,它接近等功率的多模波束形成器,与发射相关的特征向量匹配。提供了正交和非正交STBC预编码解决方案的设计实例和数值模拟结果,说明了预编码阵列增益。

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