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On the relaxed maximum-likelihood blind MIMO channel estimation for orthogonal space-time block codes

机译:关于正交空间块代码的松弛最大似然盲MIMO信道估计

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This paper concerns the maximum-likelihood channel estimation for MIMO systems with orthogonal space-time block codes when the finite alphabet constraint of the signal constellation is relaxed. We study the channel coefficients estimation subspace generated by this method. We provide an algebraic characterisation of this subspace which turns the optimization problem into a purely algebraic one and more importantly, leads to several interesting analytical proofs. We prove that with probability one, the dimension of the estimation subspace for the channel coefficients is deterministic and it decreases by increasing the number of receive antennas up to a certain critical number of receive antennas, after which the dimension remains constant. In fact, we show that beyond this critical number of receive antennas, the estimation subspace for the channel coefficients is isometric to a fixed deterministic invariant space which can be easily computed for every specific OSTB code.
机译:本文涉及当信号星座的有限字母限制被放松时,具有正交空间块代码的MIMO系统的最大似然信道估计。我们研究了这种方法生成的信道系数估计子空间。我们提供该子空间的代数表征,该代数表征将优化问题转变为纯粹代数,更重要的是,导致几个有趣的分析证据。我们证明,通过概率,频道系数的估计子空间的尺寸是确定性的,并且通过将接收天线的数量增加到一定临界数量的接收天线的数量增加,之后,它减少,之后维度保持恒定。事实上,我们示出了超出这种临界数的接收天线,信道系数的估计子空间是可以容易地计算每个特定的OSTB码的固定确定性不变空间的等距。

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