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Energy and spectral efficiency analysis of millimeter wave MIMO system based on known-position beamforming

机译:基于已知位置波束形成的毫米波MIMO系统的能量和频谱效率分析

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Millimeter wave multiple input and multiple out-put(MIMO) technique and large-scale antenna system(LSAS) have been becoming the key techniques of the fifth-generation(5G) communication for its high channel capacity and high spectrum efficiency(SE) and energy efficiency(EE), and the codebook-based beamforming(BF) technique which can greatly enhance the receiving performance of the oriented mobile station(MS) develops to the focus in practical base station(BS) deployment in recent years. However, the typical BF method using limited feedback precoding is highly complex and low-efficient because codeword searching period and channel state information(CSI) feedback period are inevitable before payload transmitting. In this paper, a position-based BF system employing 3D image reconstruction with the assistant of the co-located cameras is proposed, furthermore, the EE and SE performance of this system is detailedly investigated. The numerical results show that it brings an obvious improvement compared to limited feedback BF system. Also, a prototyping testbed about this innovative thought is built with hardware and software platform USRP and LabView communication suite.
机译:毫米波多输入和多个输出(MIMO)技术和大规模天线系统(LSA)一直成为其高通道容量和高频效率(SE)的第五代(5G)通信的关键技术和能效(EE)和基于码本的波束成形(BF)技术,其可以大大提高定向移动站(MS)的接收性能,近年来在实际基站(BS)部署中的焦点发展。然而,使用有限反馈预编码的典型BF方法是高度复杂和低效的,因为在有效载荷发送之前,码字搜索周期和信道状态信息(CSI)反馈时段是不可避免的。在本文中,提出了一种基于位置的BF系统,该基于3D图像重建与共同定位的摄像机的助手,详细研究了该系统的EE和SE性能。数值结果表明,与有限的反馈BF系统相比,它带来了明显的改进。此外,关于这种创新思想的原型测试是用硬件和软件平台USRP和LabVIEW通信套件构建的。

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