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Estimation of Basis Frequencies for Time-Varying SIMO Channels: A Second-Order Method

机译:随时间变化的SIMO信道的基频估计:一种二阶方法

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The complex exponential basis expansion model (CE-BEM) provides an accurate description for the time-varying (TV) channels encountered in mobile communications. Many blind channel identification and equalization approaches based on the CE-BEM require precise knowledge of the basis frequencies of TV channels. Existing methods for basis frequency estimation usually resort to the higher-order statistics of channel outputs and impose strict constraints on the source signal. In this paper, we propose a novel method to estimate the basis frequencies for blind identification and equalization of time-varying single-input multiple-output (SIMO) finite-impulse-response (FIR) channels. The proposed method exploits only the second-order statistics of channel outputs and does not require strong conditions on the source signal. As a result, it exhibits superior performance to the existing basis frequency estimation methods. The validity of our method is demonstrated by numerical simulations.
机译:复杂的指数基础扩展模型(CE-BEM)为移动通信中遇到的时变(TV)频道提供了准确的描述。许多基于CE-BEM的盲频道识别和均衡方法要求对电视频道的基本频率有精确的了解。现有的用于基频估计的方法通常求助于信道输出的高阶统计,并对源信号施加严格的约束。在本文中,我们提出了一种新的方法来估计用于时变单输入多输出(SIMO)有限冲激响应(FIR)通道的盲目识别和均衡的基础频率。所提出的方法仅利用信道输出的二阶统计量,并且在源信号上不需要严格的条件。结果,它表现出优于现有的基础频率估计方法的性能。数值仿真证明了我们方法的有效性。

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