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Phase-Only OFDM Communication for Downlink Massive MIMO Systems

机译:下行大规模MIMO系统的仅相位OFDM通信

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The cost and power consumption associated with the large number of linear power amplifiers required at the base station in a massive MIMO-OFDM system present a significant challenge when deploying systems commercially. In this paper, we show that capacities of up to 4 bits per channel use (bpcu) per user can be achieved in the massive MIMO downlink whilstonly transmitting the phase component of the precoded OFDM signals. This significantly reduces the peak-to-average power ratio (PAPR) of the transmit signals and relaxes the peak power and linearity requirements of the power amplifiers. Using Bussgang's theorem, it is shown that discarding the envelope information causes each OFDM subcarrier to be corrupted by an uncorrelated additive Gaussian error, which is received non-coherently by the users and asymptotically disappears as the number of transmit antennas is increased. SINR expressions are derived for linear precoders, and Monte Carlo simulations are performed with both Rayleigh and measured massive MIMO propagation channels. Under practical numbers of transmit antennas, we show that this phase-only OFDM scheme gives similar performance to other constant envelope precoding schemes described in the literature, and can achieve capacities of 2 bpcu per user with a 1-2 dB increase in mean transmit power (or 50% more transmit antennas) and 4-5 dB decrease in peak transmit power, compared to standard OFDM.
机译:当大规模部署系统时,与大规模MIMO-OFDM系统中基站所需的大量线性功率放大器相关的成本和功耗提出了重大挑战。在本文中,我们表明,在大规模MIMO下行链路中,每位用户每信道使用(bpcu)的容量最高可以达到4位,而仅发送预编码OFDM信号的相位分量。这显着降低了发射信号的峰均功率比(PAPR),并放宽了功率放大器的峰值功率和线性度要求。使用Bussgang定理,表明丢弃包络信息会导致每个OFDM子载波被不相关的加斯高斯误差破坏,用户会以非相干的方式接收该误差,并且随着发射天线数量的增加,其渐近消失。为线性预编码器推导了SINR表达式,并使用瑞利和测量的大规模MIMO传播信道执行了蒙特卡洛仿真。在实际数量的发射天线下,我们证明了这种仅相位的OFDM方案与文献中描述的其他恒定包络预编码方案具有相似的性能,并且每位用户可以实现2 bpcu的容量,平均发射功率增加1-2 dB (或发射天线增加50%),并且与标准OFDM相比,峰值发射功率降低4-5 dB。

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