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Soft-output MMSE MIMO detector under different channel estimation models

机译:不同信道估计模型下的软输出MMSE MIMO检测器

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摘要

This study considers the effect of channel estimation error (CEE) on the soft-output bit log-likelihood ratio (LLR) in a multiple-input-multiple-output detection system which the source sends their quadrature amplitude modulation to the detector through Rayleigh fading channels. The new expressions of LLR with maximum-likelihood CE for deterministic channel model and minimum mean square error (MMSE) CE for random channel model are obtained separately for linear MMSE receiver using known pilot-symbol-aided CE. Meanwhile, the optimal power allocation between training and data transmissions for these two different LLR expressions, which attends to get the maximum ratio of signal and interference plus noise ratio, are obtained under the total transmitting power constraints. Numerical results show that the power allocation ratio sets to be ~0.5 is optimal for two new different LLRs at the same total power and system noise. Moreover, the derived LLR expressions match the simulation result and outperform the conventional system without the consideration of CEE and optimal power allocation. Meanwhile, the system performance is better than the existing research with the consideration of CE.
机译:这项研究考虑了信道估计误差(CEE)对多输入多输出检测系统中软输出比特对数似然比(LLR)的影响,该系统通过瑞利衰落将其正交幅度调制发送到检测器渠道。对于线性MMSE接收机,使用已知的导频符号辅助CE分别获得具有确定性信道模型的最大似然CE和最小均方误差(MMSE)CE的LLR的新表达式。同时,在总发射功率约束下,获得了这两种不同的LLR表达式在训练和数据传输之间的最佳功率分配,该最优功率分配参与获得信号和干扰加噪声比的最大比值。数值结果表明,对于总功率和系统噪声相同的两个新的不同LLR,功率分配比设置为〜0.5是最佳的。此外,在不考虑CEE和最佳功率分配的情况下,得出的LLR表达式与仿真结果匹配,并且优于传统系统。同时,考虑到CE,系统性能优于现有研究。

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