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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Self-Matching Space-Time Block Codes for Matrix Kalman Estimator-Based ML Detector in MIMO Fading Channels
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Self-Matching Space-Time Block Codes for Matrix Kalman Estimator-Based ML Detector in MIMO Fading Channels

机译:MIMO衰落信道中基于矩阵卡尔曼估计的ML检测器的自匹配空时分组码

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摘要

This paper presents a unifying framework for designing a joint channel-estimation-and-data-detection (CE/DD) scheme and space-time block code (STBC) that improves the performances in a multiple-input–multiple-output (MIMO) slow flat Rayleigh fading channel. Modeling the channel using the continuous-fading model, a matrix state-space model, which naturally represents the temporal and spatial dimensions of a MIMO system, is introduced. A consistent and novel matrix CE/DD scheme is developed using a matrix Kalman filter and a matrix normalized-innovations-based maximum-likelihood detector. In MIMO CE/DD in multiplicative fading, symmetric STBCs (S-STBCs) cause isometric data sequences, which lead to a detection error floor. Motivated by the minimization of the probability of error, two asymmetric STBCs are introduced to be used with these S-STBCs to mitigate isometry. To further improve detection performance, a self-matching STBC (SM-STBC), which mitigates isometry using asymmetry, improves estimation performance using training, and improves detection performance by adapting its code properties, is introduced. This SM-STBC generalizes a limited version that was previously proposed. A comprehensive analysis, which is supported by some simulation studies, indicates that the proposed framework of transceiver and STBC designs offers excellent detection performance.
机译:本文提出了一个统一的框架,用于设计联合信道估计和数据检测(CE / DD)方案以及空时分组码(STBC),以改善多输入多输出(MIMO)的性能缓慢的平坦瑞利衰落信道。引入了使用连续衰落模型对信道进行建模的矩阵状态空间模型,该模型自然代表了MIMO系统的时间和空间维度。使用矩阵卡尔曼滤波器和基于矩阵归一化创新的最大似然检测器,开发出一致且新颖的矩阵CE / DD方案。在乘法衰落中的MIMO CE / DD中,对称STBC(S-STBC)会导致等距数据序列,从而导致检测错误基底。出于最小化错误概率的动机,引入了两个不对称的STBC与这些S-STBC一起使用以减轻等轴测图。为了进一步提高检测性能,引入了一种自匹配STBC(SM-STBC),该自匹配STBC可以减轻使用不对称性的等距现象,通过训练提高估计性能,并通过调整其代码属性来提高检测性能。该SM-STBC概括了先前提出的受限版本。一些仿真研究支持的综合分析表明,所提出的收发器和STBC设计框架提供了出色的检测性能。

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