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Super-orthogonal space-time codes with rectangular constellations and two transmit antennas for high data rate wireless communications

机译:具有矩形星座和两个发射天线的超正交空时码,用于高数据速率无线通信

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We demonstrate super-orthogonal space-time (ST) trellis codes with rectangular signal constellations for wireless communications with a spectral efficiency of 4 bits/s/Hz. Considering a mobile wireless communications system with two transmit antennas, we form a 4D signal constellation as Cartesian product of two 2D rectangular signal sets, a 4D point being transmitted by the first antenna as two concatenated 2D points in two consecutive channel uses. The 2D symbols transmitted by the second antenna are not independent, but so chosen as to form, together with the symbols transmitted by the first antenna, the entries of a 2 times 2 orthogonal matrix. This can be done in four different ways, resulting in four sets of 2 times 2 orthogonal matrices. To obtain a higher data rate, the union of two of them forms a super-orthogonal signal set. With 2 times 2 orthogonal matrices, we then label the state transitions of a trellis diagram describing the operation of the encoder. We perform simulations using a model that takes into account the Doppler effect as well as the effect of spatial antenna correlation at both the base station (BS) and at the mobile station (MS). The frame error rate (FER) and the bit error rate (BER) performance results show an excellent behaviour of our proposed super-orthogonal ST trellis code, which clearly outperforms all known simple ST trellis codes of same spectral efficiency using 16QAM or 16PSK
机译:我们演示了具有正交信号星座图的超正交空时(ST)格码,用于频谱效率为4位/秒/赫兹的无线通信。考虑到具有两个发射天线的移动无线通信系统,我们将4D信号星座图形成为两个2D矩形信号集的笛卡尔积,其中第一个天线将4D点作为两个连续通道使用中的两个串联2D点进行发射。由第二天线发送的2D符号不是独立的,而是被选择为与由第一天线发送的符号一起形成2×2正交矩阵的项。这可以用四种不同的方式完成,从而得到四组2 x 2正交矩阵。为了获得更高的数据速率,其中两个的并集形成了一个超正交信号集。然后使用2 x 2正交矩阵,标记描述编码器操作的网格图的状态转换。我们使用考虑了多普勒效应以及基站(BS)和移动站(MS)的空间天线相关性效应的模型进行仿真。帧错误率(FER)和误码率(BER)的性能结果表明,我们提出的超正交ST网格代码具有出色的性能,它明显优于使用16QAM或16PSK具有相同频谱效率的所有已知简单ST网格代码

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