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Robust joint fine timing synchronization and channel estimation for MIMO systems

机译:MIMO系统的鲁棒联合精细定时同步和信道估计

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摘要

This paper proposes a joint timing synchronization and channel estimation scheme for multiple-input single-output or multiple-input multiple-output communication systems. All timing offsets and channel impulse responses (CIR) of different transmit-receive links are obtained based on a well-designed training sequence arrangement. The proposed approach consists of three stages at each receive antenna. First, a coarse timing offset (CTO) estimation algorithm is performed to estimate the CTO and the inter-transmitter delays. Then, relative timing indices and the corresponding CIR estimates of all transmit-receive links at the second stage are obtained using the generalized maximum-likelihood estimation based on a sliding observation vector. Finally, the fine time adjustment based on the minimum mean-squared error criterion is performed. From the simulation results, the proposed approach has excellent timing synchronization performance under several channel models at very low signal-to-noise ratio which is smaller than 1 dB. Also, the channel estimation performance in the proposed scheme approaches to the Cramer-Rao bound.
机译:本文提出了一种用于多输入单输出或多输入多输出通信系统的联合定时同步和信道估计方案。基于精心设计的训练序列安排,可以获得不同的发射-接收链路的所有时序偏移和信道冲激响应(CIR)。所提出的方法在每个接收天线处包括三个阶段。首先,执行粗略时序偏移(CTO)估计算法以估计CTO和发射机间延迟。然后,使用基于滑动观测向量的广义最大似然估计,获得第二阶段所有发送-接收链路的相对时序索引和相应的CIR估计。最后,基于最小均方误差标准进行微调。从仿真结果来看,该方法在几种信道模型下具有极好的定时同步性能,并且信噪比非常低,小于1 dB。而且,所提出的方案中的信道估计性能接近于Cramer-Rao边界。

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