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Power Optimization in Cell-Free Massive MIMO with Non-ideal Hardware Transceiver

机译:具有非理想硬件收发器的无细胞大规模MIMO的功率优化

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摘要

A downlink cell-free massive Multipleinput multiple-output (mMIMO) system is explored. To investigate the impact of hardware distortion on downlink cell-free mMIMO, this paper recalls a well-established model of hardware impairment and derives a new closedform downlink per-user Spectral efficiency (SE) expression for distributed conjugate beamforming precoding. Based on this trackable expression, two power control algorithms, namely max-total-SE and mixed Quality-of-service (QoS) algorithms, are proposed. Numerical results indicate that the downlink per-user SE is primarily limited by the hardware quality of the receiver, especially when the user corresponds to the receiver. In addition, the proposed max-total-SE algorithm has a fast convergence rate and can significantly improve the total SE compared to the Equal power control (EPC) scheme. What's more, our mixed QoS algorithm also performs well in many respects.
机译:探讨了下行链路无电池大量多重普汇量多输出(MMIMO)系统。为了调查硬件失真对下行链路无电池MMIMO的影响,召回了一个熟悉的硬件损伤模型,并导出了用于分布式共轭波束形成预编码的新的闭合变形下行链路每用户谱效率(SE)表达式。基于该可跟踪表达式,提出了两个功率控制算法,即最大总计和混合的服务质量(QoS)算法。数值结果表明,下行链路每用户SE主要受接收机的硬件质量限制,尤其是当用户对应于接收器时。此外,与等功率控制(EPC)方案相比,所提出的MAX-Total-SE算法具有快速收敛速率,并且可以显着改善总re。更重要的是,我们的混合QoS算法在许多方面也表现良好。

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