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Iterative channel estimation for orthogonal STBC MC-CDMA systems over realistic high-mobility MIMO channels

机译:现实的高移动性MIMO信道上正交STBC MC-CDMA系统的迭代信道估计

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摘要

This paper considers a downlink multiple-input multiple-output (MIMO) multi-carrier code division multiple access (MC-CDMA) system with pilot aided channel estimation (PACE) and iterative channel estimation (ICE) in the receiver. Exploiting orthogonal space-time block coding (STBC), we investigate ICE schemes as a simple extension of PACE using estimated data chips as additional pilots. Due to the superposition of different users' spread data signals, zero-valued chips can occur after spreading, which can cause noise enhancement when using data estimates as reference signals in ICE. Hence, we propose MIMO channel estimation methods to overcome the above problem. Simulations with a realistic outdoor MIMO channel model, over a wide range of data rates and speeds, show that ICE can outperform PACE at the cost of increased complexity.
机译:本文考虑了接收机中具有导频辅助信道估计(PACE)和迭代信道估计(ICE)的下行链路多输入多输出(MIMO)多载波码分多址(MC-CDMA)系统。利用正交空时分组编码(STBC),我们将ICE方案作为PACE的简单扩展,使用估计的数据芯片作为附加导频进行研究。由于不同用户的扩频数据信号的叠加,扩频后可能会出现零值码片,当在ICE中将数据估计用作参考信号时,这可能会导致噪声增强。因此,我们提出了MIMO信道估计方法来克服上述问题。在各种数据速率和速度下,使用实际的室外MIMO信道模型进行的仿真表明,ICE可以以增加复杂性为代价胜过PACE。

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