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Joint Decision-Directed Channel and Noise-Variance Estimation for MIMO OFDM/SDMA Systems Based on Expectation-Conditional Maximization

机译:基于期望条件最大化的MIMO OFDM / SDMA系统的联合决策控制信道和噪声方差估计

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摘要

A joint channel impulse response (CIR) and noise-variance estimation scheme is proposed for multiuser multiple-input–multiple-output (MIMO) orthogonal frequency-division multiplexing/space-division multiple access (OFDM/SDMA) systems, which is based on the expectation-conditional maximization (ECM) algorithm. Multiple users communicating over fading channels exhibiting a range of different characteristics are considered in this paper. Channel estimation becomes quite challenging in this scenario since an increased number of independent transmitter–receiver links having different statistical characteristics have to be simultaneously estimated for each subcarrier. To cope with this scenario, we design an ECM-based joint CIR and noise-variance estimator for multiuser MIMO OFDM/SDMA systems, which is capable of simultaneously estimating diverse CIRs and noise variance. Furthermore, we propose a forward error code (FEC)-aided decision-directed channel estimation scheme based on the ECM algorithm, which further improves the ECM algorithm by exploiting the error correction capability of an FEC decoder for iteratively exchanging information between the decoder and the ECM algorithm.
机译:针对多用户多输入多输出正交频分复用/空分多址(OFDM / SDMA)系统,提出了一种联合信道冲激响应(CIR)和噪声方差估计方案。期望条件最大化(ECM)算法。本文考虑了在衰落信道上通信的多个用户表现出一系列不同的特性。在这种情况下,信道估计变得非常具有挑战性,因为必须为每个子载波同时估计越来越多的具有不同统计特性的独立发射机-接收机链路。为了应对这种情况,我们为多用户MIMO OFDM / SDMA系统设计了基于ECM的联合CIR和噪声方差估计器,该估计器能够同时估计各种CIR和噪声方差。此外,我们提出了一种基于ECM算法的前向错误码(FEC)辅助决策信道估计方案,该方案通过利用FEC解码器的纠错能力在解码器和解码器之间反复交换信息,进一步改进了ECM算法。 ECM算法。

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