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Turbo aided maximum likelihood channel estimation for space-time coded systems

机译:时空编码系统的Turbo辅助最大似然信道估计

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We propose a novel approach to estimating multiple-input-multiple-output (MIMO) channels in space-time coded systems. The channel is assumed to introduce dispersion in both the spatial and temporal dimensions. The channel estimator is obtained by applying the maximum likelihood principle, not only over a known pilot sequence, as in classical least-squares approaches, but also over all the symbols (both known and unknown) in a data frame. Since this results in an optimization problem without closed-form solution, we utilize an iterative method, the expectation-maximization (EM) algorithm, to calculate the solution. The resulting channel estimator is particularly suitable to be used in a turbo equalizing structure because it benefits from the a posteriori probabilities about the transmitted symbols computed at each decoding iteration of the turbo process.
机译:我们提出了一种新颖的方法来估计空时编码系统中的多输入多输出(MIMO)信道。假定该信道在空间和时间维度上都引入了色散。通过不仅在已知的导频序列上(如经典最小二乘法中那样)而且在数据帧中的所有符号(已知和未知)上都应用最大似然原理,可以获得信道估计器。由于这会导致没有封闭形式的解决方案的优化问题,因此我们采用了一种迭代方法,即期望最大化(EM)算法来计算解决方案。所得的信道估计器特别适合在turbo均衡结构中使用,因为它得益于在turbo过程的每次解码迭代中计算出的关于发射符号的后验概率。

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