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A QRD-M/Kalman filter-based detection and channel estimation algorithm for MIMO-OFDM systems

机译:基于QRD-M / Kalman滤波器的MIMO-OFDM系统检测和信道估计算法

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The use of multiple transmit/receive antennas forming a multiple-input multiple-output (MIMO) system can significantly enhance channel capacity. This paper considers a V-BLAST-type combination of orthogonal frequency-division multiplexing (OFDM) with MIMO (MIMO-OFDM) for enhanced spectral efficiency and multiuser downlink throughput. A new joint data detection and channel estimation algorithm for MIMO-OFDM is proposed which combines the QRD-M algorithm and Kalman filter. The individual channels between antenna elements are tracked using a Kalman filter, and the QRD-M algorithm uses a limited tree search to approximate the maximum-likelihood detector. A closed-form symbol-error rate, conditioned on a static channel realization, is presented for the M=1 case with QPSK modulation. An adaptive complexity QRD-M algorithm (AC-QRD-M) is also considered which assigns different values of M to each subcarrier according to its estimated received power. A rule for choosing M using subcarrier powers is obtained using a kernel density estimate combined with the Lloyd-Max algorithm.
机译:形成多输入多输出(MIMO)系统的多个发射/接收天线的使用可以显着增强信道容量。本文考虑了V-BLAST型正交频分复用(OFDM)与MIMO(MIMO-OFDM)的组合,以提高频谱效率和多用户下行链路吞吐量。结合QRD-M算法和卡尔曼滤波器,提出了一种新的MIMO-OFDM联合数据检测和信道估计算法。使用卡尔曼滤波器跟踪天线元件之间的各个信道,QRD-M算法使用有限树搜索来近似最大似然检测器。针对采用QPSK调制的M = 1情况,提出了一种基于静态信道实现的闭式符号错误率。还考虑了自适应复杂度QRD-M算法(AC-QRD-M),该算法根据每个子载波的估计接收功率为每个子载波分配不同的M值。使用核密度估计与Lloyd-Max算法相结合,可获得使用子载波功率选择M的规则。

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