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首页> 外文期刊>IEICE Transactions on Communications >Frequency-Domain Iterative Parallel Interference Cancellation for Multicode Spread-Spectrum MIMO Multiplexing
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Frequency-Domain Iterative Parallel Interference Cancellation for Multicode Spread-Spectrum MIMO Multiplexing

机译:多码扩频MIMO复用的频域迭代并行干扰消除

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Very high-speed data services are demanded in the next generation wireless systems. However, the available bandwidth is limited. The use of multi-input multi-output (MIMO) multiplexing can increase the transmission rate without bandwidth expansion. For high-speed data transmission, however, the channel becomes severely frequency-selective and the achievable bit error rate (BER) performance degrades. In our previous work, we proposed the joint use of iterative frequency-domain parallel interference cancellation (PIC) and two-dimensional (2D) MMSE-FDE for the non-spread single-carrier (SC) transmission in a frequency-selective fading channel. The joint use of PIC and 2D MMSE-FDE can effectively suppress the inter-path interference (IPI) and the inter-code interference (ICI), resulting from the channel frequency-selectivity, and the interference from other antennas simultaneously. An iterative PIC with 2D MMSE-FDE has a high computational complexity. In this paper, to well suppress the interference from other antennas while reducing the computational complexity, we propose to replace 2D MMSE-FDE by 1D MMSE-FDE except for the initial iteration stage and to use multicode spread-spectrum (SS) transmission instead of the non-spread SC transmission. The BER performance of the proposed scheme in a frequency-selective Rayleigh fading channel is evaluated by computer simulation to show that the proposed scheme can basically match the BER performance of 2D MMSE-FDE with lower complexity.
机译:下一代无线系统需要非常高速的数据服务。但是,可用带宽是有限的。多输入多输出(MIMO)复用的使用可以在不增加带宽的情况下提高传输速率。然而,对于高速数据传输,信道变得严格地频率选择,并且可达到的误码率(BER)性能下降。在我们之前的工作中,我们提出了将迭代频域并行干扰消除(PIC)和二维(2D)MMSE-FDE联合用于频率选择衰落信道中的非扩展单载波(SC)传输。 PIC和2D MMSE-FDE的联合使用可以有效地抑制由于信道频率选择性以及其他天线的干扰而引起的路径间干扰(IPI)和代码间干扰(ICI)。具有2D MMSE-FDE的迭代PIC具有很高的计算复杂度。在本文中,为了在降低计算复杂度的同时很好地抑制来自其他天线的干扰,我们建议用1D MMSE-FDE代替2D MMSE-FDE(初始迭代阶段除外),并使用多码扩频(SS)传输代替非扩展SC传输。通过计算机仿真评估了该方案在频率选择性瑞利衰落信道中的BER性能,结果表明该方案基本可以降低二维MMSE-FDE的BER性能。

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