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Hybrid precoding with phase shifter reduction for 5G massive antenna multi-user systems in millimetre wave

机译:毫米波中用于5G大型天线多用户系统的具有相移减少功能的混合预编码

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摘要

In this study, the performances of commonly used precoding schemes are evaluated based on channel measurements carried out at 28GHz in a railway station for a massive antenna system configuration. And a hybrid precoding algorithm for a fifth generation (5G) multi-user antenna system is proposed and its performance is evaluated based on real measured channels. Specifically, An upper bound for achievable sum-rate of phased zero forcing (PZF) algorithm is derived and a precoding technique by reduction of phase shifters (PSs) named reduced-PZF (RPZF) is proposed, which can obviously reduce power consumption in hybrid precoding systems. In addition, the authors give the closed-form expression for achievable sum-rate when RPZF is used. There are no requirements in the authors' proposed scheme with complicated matrix decomposition and optimisation techniques. The simulation results show that it is possible to reduce 30 and 50% of the PSs by using the proposed hybrid precoder with better system performance in the line-of-sight (LoS) and non-LoS scenarios, respectively. In addition, the digital PSs with 3 bits low resolution can achieve the similar performance when using analogue ones.
机译:在这项研究中,基于在大型天线系统配置中在火车站以28GHz进行的信道测量,评估了常用的预编码方案的性能。提出了一种用于第五代(5G)多用户天线系统的混合预编码算法,并基于实测信道评估了其性能。具体而言,推导了相控零强制(PZF)算法可达到的总和的上限,并提出了一种通过减少移相器(PSs)的预编码技术,称为reduced-PZF(RPZF),可以明显降低混合动力汽车的功耗。预编码系统。另外,作者给出了使用RPZF时可达到的总和率的闭式表达式。作者提出的方案没有复杂的矩阵分解和优化技术的要求。仿真结果表明,通过使用建议的混合预编码器,可以分别在视线(LoS)和非LoS场景中降低30%和50%的PS性能。此外,具有3位低分辨率的数字PS可以在使用模拟PS时达到类似的性能。

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