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Signal, noise and interference power analysis in MRT-based Massive MIMO systems

机译:基于MRT的Massive MIMO系统中的信号,噪声和干扰功率分析

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Massive MIMO is a promising technology for 5G. While its advantages of increasing capacity and reducing output power are clear, understanding its SNR requirements in practical cases lacks sufficient theoretical support. This paper computes the relative power levels of the different signal, interference and noise terms in a Massive MIMO system using Maximum-Ratio Transmission (MRT). This brings light on the operational region of the system. The MRT operation is shown to support a maximum number of users, which is function of the selected modulation and coding scheme. The related expression also leads to a bound for other linear precoders. The impact of channel estimation is shown to be related to the number of orthogonal pilot sequences and users. When both are equal it leads to a 3 dB degradation. At system level, this model directly impacts output power requirements and hence system trade-offs when determining the number of antennas to use.
机译:大规模MIMO是5G的一项有前途的技术。尽管它具有增加容量和降低输出功率的优势很明显,但在实际情况下了解其SNR要求仍缺乏足够的理论支持。本文使用最大比率传输(MRT)计算大规模MIMO系统中不同信号,干扰和噪声项的相对功率电平。这为系统的操作区域带来了光明。 MRT操作显示为支持最大数量的用户,这是所选调制和编码方案的函数。相关表达式还导致其他线性预编码器的界限。示出了信道估计的影响与正交导频序列和用户的数量有关。当两者相等时,将导致3 dB的衰减。在系统级别,此模型直接影响输出功率要求,因此在确定要使用的天线数量时会影响系统的权衡。

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