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首页> 外文期刊>IEICE Transactions on Communications >Joint Frequency-Domain Equalization and Despreading for Multi-Code DS-CDMA Using Cyclic Delay Transmit Diversity
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Joint Frequency-Domain Equalization and Despreading for Multi-Code DS-CDMA Using Cyclic Delay Transmit Diversity

机译:使用循环延迟发射分集的多码DS-CDMA联合频域均衡和解扩

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摘要

Frequency-domain equalization (FDE) based on the minimum mean square error (MMSE) criterion can provide a better bit error rate (BER) performance than rake combining. To further improve the BER performance, cyclic delay transmit diversity (CDTD) can be used. CDTD simultaneously transmits the same signal from different antennas after adding different cyclic delays to increase the number of equivalent propagation paths. Although a joint use of CDTD and MMSE-FDE for direct sequence code division multiple access (DS-CDMA) achieves larger frequency diversity gain, the BER performance improvement is limited by the residual inter-chip interference (ICI) after FDE. In this paper, we propose joint FDE and despreading for DS-CDMA using CDTD. Equalization and despreading are simultaneously performed in the frequency-domain to suppress the residual ICI after FDE. A theoretical conditional BER analysis is presented for the given channel condition. The BER analysis is confirmed by computer simulation.
机译:基于最小均方误差(MMSE)准则的频域均衡(FDE)可提供比瑞克组合更好的误码率(BER)性能。为了进一步提高BER性能,可以使用循环延迟发射分集(CDTD)。在添加不同的循环延迟以增加等效传播路径的数量之后,CDTD同时从不同的天线发送相同的信号。尽管将CDTD和MMSE-FDE联合用于直接序列码分多址(DS-CDMA)可以获得更大的频率分集增益,但是BER性能的提高受到FDE之后残留的芯片间干扰(ICI)的限制。在本文中,我们建议使用CDTD对DS-CDMA进行联合FDE和解扩。在频域中同时执行均衡和解扩,以抑制FDE之后的残留ICI。给出了针对给定信道条件的理论条件BER分析。 BER分析通过计算机仿真得到确认。

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