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A family of Quasi-orthogonal space-time block codes with linear receivers

机译:带有线性接收器的准正交空时分组码系列

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In this paper, we explored the potential of using linear receivers for one of the best existing space-time block codes (STBCs) namely Quasi-orthogonal STBCs (QOSTBCs). This family of QOSTBCs are known as one of the best, because of their good performance, systematic construction for any number of transmit and receive antennas and appropriate symbol rate. The only disadvantage of these codes could be the complexity of their maximum likelihood (ML) decoder. In this paper, we used linear receivers to reduce the complexity of the receiver. In both well-known linear receivers namely minimum mean square error (MMSE) decoder and Zero-forcing (ZF) decoder, the receiver needs to compute the inverse of the equivalent channel matrix which adds the burden of calculating the high computational complexity operation of matrix inverse. In this work, more importantly, we could formulate the general form of the inverse of the equivalent channel matrix which extremely decreases the computational complexity of the receiver.
机译:在本文中,我们探索了将线性接收器用于现有的最佳时空分组码(STBC)之一,即准正交STBC(QOSTBC)的潜力。 QOSTBC系列被认为是最好的系列之一,因为它们具有良好的性能,可用于任意数量的发射和接收天线的系统结构以及适当的符号率。这些代码的唯一缺点可能是其最大似然(ML)解码器的复杂性。在本文中,我们使用线性接收器来降低接收器的复杂度。在两个众所周知的线性接收机中,即最小均方误差(MMSE)解码器和迫零(ZF)解码器,接收机都需要计算等效信道矩阵的逆,这增加了计算矩阵的高计算复杂度运算的负担逆。在这项工作中,更重要的是,我们可以制定等效信道矩阵逆的一般形式,从而极大地降低了接收机的计算复杂度。

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