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Channel Equalization and Symbol Detection for Single-Carrier MIMO Systems in the Presence of Multiple Carrier Frequency Offsets

机译:存在多个载波频率偏移的单载波MIMO系统的信道均衡和符号检测

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摘要

A new frequency-domain channel equalization and symbol detection scheme is proposed for multiple-input–multiple-output (MIMO) single-carrier broadband wireless systems in the presence of severely frequency-selective channel fading and multiple unknown carrier-frequency offsets (CFOs). Multiple CFOs cause severe phase distortion in the equalized data for large block lengths and/or constellation sizes, thus yielding poor detection performance. Instead of explicitly estimating the CFOs and then compensating them, the proposed scheme estimates the rotated phases (not frequencies) caused by multiple unknown CFOs and then removes the phase rotations from the equalized data before symbol detection. The estimation accuracy of the phase rotation is improved by utilizing a groupwise method rather than symbol-by-symbol methods. This paper differs from other related work in orthogonal frequency division multiplexing (OFDM) studies in that it can combat multiple CFOs that are time varying within each block. Numerical examples for 4 $times$ 2 and 8 $times$ 4 single-carrier systems with quaternary phase-shift keying (QPSK) and eight-phase-shift keying (8PSK) modulation illustrate the effectiveness of the proposed scheme in terms of scatter plots of constellation, mean square error (MSE), and bit error rate (BER).
机译:针对存在严重频率选择性信道衰落和多个未知载波频率偏移(CFO)的多输入多输出(MIMO)单载波宽带无线系统,提出了一种新的频域信道均衡和符号检测方案。对于大块长度和/或星座图大小,多个CFO会在均衡数据中引起严重的相位失真,从而导致检测性能较差。提议的方案不是显式估计CFO然后进行补偿,而是估计由多个未知CFO引起的旋转相位(而不是频率),然后在符号检测之前从均衡数据中移除相位旋转。通过使用逐组方法而不是逐个符号的方法,提高了相位旋转的估计精度。本文与正交频分复用(OFDM)研究中的其他相关工作有所不同,因为它可以应对每个块内随时间变化的多个CFO。具有四元相移键控(QPSK)和八相移键控(8PSK)调制的4 x 2和8 x 4单载波系统的数值示例以散点图的形式说明了该方案的有效性星座图,均方误差(MSE)和误码率(BER)。

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