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Low-complexity channel estimator based on the complex exponential BEM for a vector OFDM system

机译:基于对矢量OFDM系统复杂指数BEM的低复杂性信道估计

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In high mobility wireless communications, the wireless propagation channel usually exhibits selectivity in both time and frequency domain, thus being referred to as doubly selective channel. How to efficiently estimate the channel state information and provide reliable wireless services in such channels are becoming increasingly critical issues to be coped with. In this paper, we focus on vector orthogonal frequency-division multiplexing (Vector OFDM) system in doubly selective channel modeled by complex exponential basis expansion model (CE-BEM). By carefully studying the symbol spreading structure, a low-complexity channel estimation algorithm is designed and a modified CE-BEM channel model, which adapts to high mobility conditions, is proposed. Numerical results verify the good performance of the proposed channel estimation scheme as well as the modified CE-BEM method.
机译:在高移动性无线通信中,无线传播信道通常在时间和频域中表现出选择性,从而称为双重选择性信道。如何有效地估计信道状态信息并在这种频道中提供可靠的无线服务正在变得越来越重要的问题要应对。在本文中,我们专注于复杂指数基础扩展模型(CE-BEM)模型的双重选择性通道中的向量正交频分复用(矢量OFDM)系统。通过仔细研究符号扩展结构,设计了低复杂性信道估计算法,并提出了一种改进的CE-BEM信道模型,其适应高移动性条件。数值结果验证了所提出的信道估计方案的良好性能以及修改的CE-BEM方法。

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