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Comparative study of channel estimators for massive MIMO 5G NR systems

机译:大规模MIMO 5G NR系统信道估计的比较研究

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摘要

In this work, a comparative analysis is performed to study the bit error rate and error vector magnitude achieved with the least-squares (LS), the minimum mean squared error (MSE), and the Kalman filter (KF) channel estimators when these are applied to the maximum-ratio combining (MRC) and the regularised zero-forcing (RZF) receivers. The MSE achieved with the different channel estimators was also compared by varying the noise and interference power at the receiver. The proposed methodology relies on the characterisation of a massive multiple-input multiple-output (MIMO) channel with a quasi-deterministic radio channel generator and a cyclic prefix orthogonal frequency division multiplexing link-level radio simulation. The fifth-generation (5G) new radio (NR) frame structure was used to perform channel estimation and equalisation for operation frequencies below 6 GHz. Numerical results show that the MRC receiver achieves its maximum performance with the KF estimator, especially at low signal-to-noise ratio scenarios, while the RZF receiver achieves its maximum performance with the LS estimation even in high interference scenarios.
机译:在这项工作中,执行比较分析以研究利用最小二乘(LS),最小平均平方误差(MSE)和卡尔曼滤波器(KF)信道估计所实现的误码率和误差矢量幅度。应用于最大比率组合(MRC)和正则化零强制(RZF)接收器。通过在接收器处改变噪声和干扰功率,也可以使用不同信道估计器实现的MSE。所提出的方法依赖于具有准确定性无线电信道发生器的大量多输入多输出(MIMO)信道和循环前缀正交频分复用链路级无线电仿真的表征。第五代(5G)新的无线电(NR)帧结构用于执行低于6GHz的操作频率的信道估计和均衡。数值结果表明,MRC接收器通过KF估计器实现其最大性能,尤其是在低信噪比场景中,而RZF接收器即使在高干扰场景中也可以实现其最大性能。

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