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A General Framework for Optimum Iterative Blockwise Equalization of Single Carrier MIMO Systems and Asymptotic Performance Analysis

机译:单载波MIMO系统最优迭代逐块均衡和渐近性能分析的通用框架

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摘要

The paper proposes a general framework for both time-domain (TD) and frequency-domain (FD) iterative blockwise equalization in single carrier (SC) wideband multiple-input multiple-output (MIMO) channels. First, a novel turbo blockwise operating equalizer structure is proposed by jointly optimizing the feed-forward and feedback filters at each iteration based on the minimum mean squared error (MMSE) criterion. Optimization of the filter coefficients, utilized for feed-forward equalization and decision feedback, is performed in both time and frequency domains, and the equivalence between them is established by unifying the iterative block equalization with the feed-forward and feedback filters in various domains. The corresponding filters are obtained analytically in a closed form as a solution of the constrained Wiener-Hopf equation with the use of average reliability information. Second, asymptotic performance and diversity analysis of the proposed single carrier frequency domain equalizer (SC-FDE) is carried out that leads to insights on the structures of the filters in the high SNR regime. Furthermore, we elaborate on the rate and diversity tradeoff of the space-time coded SC-FDE based on the proposed equalizer structure and the space-frequency coded OFDM systems. Performance comparison between the proposed SC-FDE scheme and OFDM is made. The proposed SC-FDE scheme performs very close to the genie-aided performance bounds and better than OFDM based transmission.
机译:本文为单载波(SC)宽带多输入多输出(MIMO)信道中的时域(TD)和频域(FD)迭代块均衡提出了一个通用框架。首先,通过基于最小均方误差(MMSE)准则在每次迭代中共同优化前馈和反馈滤波器,提出了一种新颖的turbo逐级操作均衡器结构。用于前馈均衡和决策反馈的滤波器系数的优化是在时域和频域中进行的,它们之间的等效性是通过在各个域中将迭代块均衡与前馈和反馈滤波器统一来建立的。使用平均可靠性信息,以封闭形式通过解析获得相应的滤波器,作为约束的Wiener-Hopf方程的解。其次,对所提出的单载波频域均衡器(SC-FDE)进行了渐近性能和分集分析,从而深入了解了高SNR体制中的滤波器结构。此外,我们在提出的均衡器结构和空频编码OFDM系统的基础上,详细阐述了空时编码SC-FDE的速率和分集权衡。在提出的SC-FDE方案和OFDM之间进行性能比较。所提出的SC-FDE方案的性能非常接近精灵辅助的性能范围,并且优于基于OFDM的传输。

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