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Joint Estimation of RF Impairments, Channel, and Low Complexity Iterative Equalization Technique for High Mobility SC-FDMA/OFDMA Uplink Systems

机译:高迁移率SC-FDMA / OFDMA上行链路系统的RF损伤,通道和低复杂性迭代均衡技术的联合估计

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In this paper, we consider the problem of joint estimation and equalization of doubly selective channels and all radio frequency impairments, namely transmitter IQ imbalance (TIQI), receiver IQI (RIQI) and carrier frequency offsets (CFO) in the uplink of single carrier frequency division multiple access (SC-FDMA) and orthogonal frequency division multiple access (OFDMA) systems with direct conversion transceiver architecture and high mobility users. We combine the effect of TIQI, RIQI and DSC to a new effective channel and propose the use of a Hermite polynomial based basis expansion model for approximating it to avoid the identifiability issue associated with this complete parameter estimation problem. As the maximum likelihood solution to this joint estimation problem requires complex multi-dimensional searches, we propose a novel subspace nulling based iterative estimation technique that effectively reduces the multi-user interference and replaces the multi-dimensional search with single-dimensional searches. Further, without much compromise on the performance, we also derive a low complexity version of the proposed technique. Additionally, we derive the Cramer-Rao bound for the joint estimation of CFO and effective channel. Moreover, we propose two equalization techniques for iteratively equalizing the mirror subcarrier pairs. The proposed techniques do not put any restriction on the carrier assignment scheme and provide good performance even at high mobile speeds.
机译:在本文中,我们考虑了双层选择性通道的联合估计和均衡问题,即在单载波频率的上行链路中发送器IQ不平衡(TIQI),接收器IQI(RIQI)和载波频率偏移(CFO)具有直接转换收发器架构和高移动用户的分割多个访问(SC-FDMA)和正交频分多址(OFDMA)系统。我们将TIQI,RIQI和DSC的效果与新的有效通道结合起来,提出了使用Hermite多项式基础扩展模型,以估计它以避免与该完整参数估计问题相关的可识别性问题。随着该联合估计问题的最大可能性解决方案需要复杂的多维搜索,我们提出了一种基于新的子空间无效的迭代估计技术,其有效地减少了多用户干扰,并用单维搜索替换多维搜索。此外,在表现上没有妥协,我们还导出了所提出的技术的低复杂性版本。此外,我们派生了CRAMER-RAO,以获得CFO和有效渠道的联合估计。此外,我们提出了两个均衡技术,用于迭代地均衡镜子子载波对。所提出的技术不会对运营商分配方案进行任何限制,即使在高移动速度下也能提供良好的性能。

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