Channel Code Aided Decision-Directed Channel Estimation for MIMO OFDM/SDMA Systems Based on the "Expectation-Conditional Maximization Either" Algorithm

Jiankang Zhang, L. Hanzo, X. Mu
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引用次数: 1

Abstract

In this paper, a Forward Error Coded (FEC) Decision-Directed (FEC-DD) channel estimation scheme is proposed for Multiple-Input Multiple-Output (MIMO) Orthogonal Frequency Division Multiplexing/Space Division Multiple Access (OFDM/SDMA) systems which is based on the Expectation-Conditional Maximization Either (ECME) algorithm. The proposed DD technique is combined with the Optimised Hierarchy Reduced Search Algorithm (OHRSA) based Multi-User Detector (MUD) and directly calculates the Maximization-Step (M-Step) by conditionally maximizing the logarithmic likelihood function of the ``incomplete'' data. We avoid the employment of matrix inversion, since only a single subcarrier's Frequency-Domain CHannel Transfer Function (FD-CHTF) is calculated at a time, since we assume that the other subcarriers' FD-CHTFs are the most recent estimates from the previous iteration of the proposed scheme. Our simulation results have demonstrated that the proposed scheme is capable of reducing the received power requirement by $4 dB$ upon exploiting the error correction capability of a FEC decoder within the ECME loop.
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基于“期望-条件任意最大化”算法的MIMO OFDM/SDMA系统信道码辅助决策导向信道估计
针对多输入多输出(MIMO)正交频分复用/空分多址(OFDM/SDMA)系统,提出了一种基于期望-条件最大化任意(ECME)算法的前向错误编码(FEC)决策导向(FEC- dd)信道估计方案。提出的DD技术与基于优化层次简化搜索算法(OHRSA)的多用户检测器(MUD)相结合,通过有条件地最大化“不完整”数据的对数似然函数,直接计算最大化步骤(M-Step)。我们避免使用矩阵反演,因为一次只计算单个子载波的频域信道传递函数(FD-CHTF),因为我们假设其他子载波的FD-CHTF是所提出方案的前一次迭代的最新估计。我们的仿真结果表明,该方案能够利用ECME环路内FEC解码器的纠错能力,将接收功率需求降低4 dB。
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