Joint Equalization and Phase Noise Estimation for the Uplink in Massive MIMO SC-FDE Schemes

P. Pedrosa, R. Dinis
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引用次数: 2

Abstract

In this paper we consider the use of massive multiple-input, multiple-output (MIMO) combined with single-carrier with frequency-domain equalization (SC-FDE) modulations for the uplink, where phase noise occurs both at the receiver and the transmitter. To cope with the channel and the phase noise effects, we propose a receiver structure for joint equalization and phase noise estimation using low-complexity iterative frequency-domain equalization based on the equal gain combining (EGC) concept for the channel equalization allied to a particle filter for the phase noise estimation procedure. Since the equalization step decouples the data streams, the complexity of the phase noise estimation step grows linearly with the number of transmit antennas. In fact, phase noise estimation occurs concurrently for each receive antenna phase noise process. Assuming small phase noise levels at the receiver (i.e., the base station) while letting the phase noise levels take larger values at the transmitter the proposed scheme displays excellent performance.
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大规模MIMO SC-FDE方案中上行链路的联合均衡和相位噪声估计
在本文中,我们考虑在上行链路中使用大规模多输入多输出(MIMO)与单载波频域均衡(SC-FDE)调制相结合,其中接收端和发送端都存在相位噪声。为了应对信道和相位噪声的影响,我们提出了一种联合均衡和相位噪声估计的接收机结构,采用基于等增益组合(EGC)概念的低复杂度迭代频域均衡,用于信道均衡,并结合粒子滤波器用于相位噪声估计过程。由于均衡步骤对数据流进行解耦,相位噪声估计步骤的复杂度随发射天线数线性增长。实际上,相位噪声估计是在每个接收天线相位噪声过程中并行进行的。假设接收机(即基站)的相位噪声水平较小,而发射机的相位噪声水平较大,所提出的方案显示出优异的性能。
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