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Frequency-Domain Block Turbo-Equalization for Single-Carrier Transmission Over MIMO Broadband Wireless Channel

机译:MIMO宽带无线信道上单载波传输的频域块Turbo均衡

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This paper presents a new class of block turbo-equalizers for single-carrier transmission over multiple-input multiple-output (MIMO) broadband wireless channels. The key underlying idea consists in equalizing (nonoverlapping) groups of symbols and detecting their individual space-time components in a disjoint and iterative fashion. This functional split naturally induces new design options that have been accurately listed and described, i.e., choice of distinct criteria for intergroup interference (IGI) equalization and intragroup components detection, yielding hybrid structures, multiple iterative loops, and related scheduling variants. Selected algorithms in the proposed class are compared in terms of performance under various transmission scenarios. For all of them, minimum mean square error IGI equalization certainly occupies a central role (at least for the first iteration) and may be identified as the computational bottleneck. Fortunately, block spread transmission together with cyclic prefix operations make the channel matrix block circulant, thus allowing low-complexity inversion in the Fourier domain
机译:本文提出了一种新的块涡轮均衡器,用于在多输入多输出(MIMO)宽带无线信道上进行单载波传输。关键的基本思想在于均衡(不重叠)符号组,并以不相交和迭代的方式检测其各个时空分量。这种功能上的划分自然会引发已被准确列出和描述的新设计选项,即为组间干扰(IGI)均衡和组内组件检测选择不同的标准,从而产生混合结构,多个迭代循环以及相关的调度变量。在各种传输方案下,根据性能对所提议类别中的选定算法进行比较。对于所有这些变量,最小均方误差IGI均衡无疑起着核心作用(至少对于第一次迭代而言),并且可能被识别为计算瓶颈。幸运的是,块扩展传输与循环前缀操作一起使信道矩阵块循环,从而允许在傅立叶域中进行低复杂度的求逆

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