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Deterministic linear prediction methods for blind channel estimation based on dual concept of zero-forcing equalization

机译:基于迫零均衡双重概念的确定性线性盲信道估计线性预测方法

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This paper investigates a class of second-order blind channel estimation algorithms based on deterministic linear prediction, which includes double-sided as well as forward and backward single-sided, for single input multiple output (SIMO) finite impulse response (FIR) channels. By introducing the dual problem of well-known zero-forcing equalization concept, we first derive a double-sided deterministic linear prediction (D-DLP) algorithm that has, good channel estimation performance with the knowledge of exact channel order. By further exploiting the interference subspace cancellation technique and the triangular block-Toeplitz structure of a portion of the channel filtering matrix (upper-left or lower-right part), we obtain the forward and backward single-sided deterministic linear prediction (FS-DLP and BS-DLP) algorithms that can work in the absence of knowledge of channel order with a cost of relatively poor channel estimate. Moreover, a channel order estimation method is also studied based on results from both FS-DLP and BS-DLP. Simulation examples are finally presented to demonstrate the potential of the proposed methods.
机译:本文研究了基于确定性线性预测的一类二阶盲信道估计算法,该算法包括针对单输入多输出(SIMO)有限冲激响应(FIR)信道的双面以及正反面。通过引入众所周知的迫零均衡概念的对偶问题,我们首先推导了一种双面确定性线性预测(D-DLP)算法,该算法具有准确的信道顺序知识,具有良好的信道估计性能。通过进一步利用干扰子空间抵消技术和部分信道滤波矩阵(左上或右下部分)的三角形块-托普利茨结构,我们获得了前向和后向单边确定性线性预测(FS-DLP)和BS-DLP算法),这些算法可以在不了解信道顺序的情况下工作,但代价是信道估计相对较差。此外,还基于FS-DLP和BS-DLP的结果研究了信道阶数估计方法。最后给出了仿真示例,以证明所提出方法的潜力。

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