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Efficient semi-blind estimation of multipath channel parameters via a delay decoupling optimization approach

机译:通过延迟解耦优化方法对多径信道参数进行有效的半盲估计

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In this paper a parametric method for estimating the unknown multipath channel impulse response (CIR) in a semi-blind manner is proposed. The main trait of this method is that instead of seeking the whole CIR sequence, only the unknown time delays and attenuation factors of the physical channel multipath components are estimated. The technique is based on a suitable application of the sub-channel response matching (SRM) criterion. The resulting cost function is separable with respect to the two sets of unknown parameters, i.e., time delays and attenuation factors, and thus a two step optimization procedure can be applied. Concerning the first step, which is the most difficult one, it is proven that the resulting non-linear cost function can be decoupled in terms of the respective time delay parameters. Thus, only a small number of simple linear searches needs to be executed in order to estimate the time delays of the multipath channel. The new method offers significant computational savings and a lower mean square estimation error as compared to existing semi-blind channel estimation methods. It performs well even for closely-spaced delays and is quite robust to channel overmodeling.
机译:本文提出了一种用于半盲估计未知多径信道冲激响应(CIR)的参数方法。该方法的主要特点是,无需寻找整个CIR序列,而是仅估计物理信道多径分量的未知时间延迟和衰减因子。该技术基于子信道响应匹配(SRM)标准的适当应用。相对于两组未知参数,即时间延迟和衰减因子,所得的成本函数是可分离的,因此可以应用两步优化程序。关于第一步,这是最困难的一步,已证明可以根据相应的时延参数将所得的非线性成本函数解耦。因此,仅需要执行少量简单的线性搜索,以便估计多径信道的时间延迟。与现有的半盲信道估计方法相比,该新方法提供了可观的计算节省和较低的均方估计误差。即使对于间隔很近的延迟,它也能很好地表现出来,并且对于通道过建模非常强大。

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