论文标题
在大型MIMO中非线性互惠不匹配的影响和校准
Impact and Calibration of Nonlinear Reciprocity Mismatch in Massive MIMO
论文作者
论文摘要
通过利用上行链路 - 下链接通道的互惠率来估计通道状态信息(CSI)的时间划分双重跨性别多输入(MIMO)系统估算通道状态信息(CSI),当不对称的不匹配是由不对称上行链路链路链路链路链路和下链链路频率(RF)链(RF)链引起的,这是不再有效的。现有作品将互不匹配视为简单性的恒定不匹配。但是,实用的RF链由非线性组件组成,这导致非线性互惠不匹配。在这项工作中,我们研究了非线性互惠不匹配在大型MIMO系统中的影响和校准方法。为了评估非线性不匹配的影响,我们首先得出了可实现率的封闭形式的表达。然后,我们分析了非线性不匹配造成的性能损失,以表明在基站(BS)侧的不匹配的影响远大于用户设备方面的影响。因此,我们为BS提出了一种校准方法。在校准期间,多项式功能用于近似非线性不匹配因子,并采用了空中训练来估计多项式系数。之后,通过最大化下行链路可实现的速率来计算校准系数。提出了仿真结果以验证分析结果并显示提出的校准方法的性能。
Time-division-duplexing massive multiple-input multiple-output (MIMO) systems estimate the channel state information (CSI) by leveraging the uplink-downlink channel reciprocity, which is no longer valid when the mismatch arises from the asymmetric uplink and downlink radio frequency (RF) chains. Existing works treat the reciprocity mismatch as constant for simplicity. However, the practical RF chain consists of nonlinear components, which leads to nonlinear reciprocity mismatch. In this work, we examine the impact and the calibration approach of the nonlinear reciprocity mismatch in massive MIMO systems. To evaluate the impact of the nonlinear mismatch, we first derive the closed-form expression of the ergodic achievable rate. Then, we analyze the performance loss caused by the nonlinear mismatch to show that the impact of the mismatch at the base station (BS) side is much larger than that at the user equipment side. Therefore, we propose a calibration method for the BS. During the calibration, polynomial function is applied to approximate the nonlinear mismatch factor, and over-the-air training is employed to estimate the polynomial coefficients. After that, the calibration coefficients are computed by maximizing the downlink achievable rate. Simulation results are presented to verify the analytical results and to show the performance of the proposed calibration approach.