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Signal detection for MIMO-ISI channels: a unitary linear recovery approach

机译:MIMO-ISI信道的信号检测:单一线性恢复方法

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In this paper, a new detector called unitary linear recovery (ULR) is proposed for MIMO-LSI channels with imprecise channel knowledge. The proposed method seeks the best match between the observation subspace and the Bezout signal subspace by optimizing over valid signaling matrices with structural, finite alphabet, and whiteness constraints. Forcing signal whiteness constraints result in a distinct distance measure (sum of singular values) to be used as the criterion. Algorithmically, the proposed method alternates between forcing signal orthogonality via searching for an optimal unitary linear recovery operator, and forcing Sylvester and finite alphabet constraints on the recovered outputs. Simulations show that ULR may outperform the MMSE detector with exact channel knowledge and ULR with successive interference cancellation gives a very attractive performance.
机译:在本文中,针对具有不精确信道知识的MIMO-LSI信道,提出了一种新的检测器,称为单一线性恢复(ULR)。所提出的方法通过对具有结构,有限字母和白度约束的有效信令矩阵进行优化来寻求观察子空间与Bezout信号子空间之间的最佳匹配。强制信号白度约束会导致将不同的距离度量(奇异值之和)用作标准。从算法上讲,该方法在以下两种方法之间交替:通过搜索最佳linear线性恢复算符来强制信号正交,以及对恢复后的输出施加Sylvester和有限字母约束。仿真表明,具有精确的信道知识的ULR可能会胜过MMSE检测器,而具有连续干扰消除功能的ULR则具有非常诱人的性能。

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