用于上行单载波CDMA的STBC,具有频域均衡性

F. Horlin, Eduardo Lopez-Estraviz, L. Perre
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引用次数: 3

摘要

单载波码分多址(SC-CDMA),文献中也称循环前缀CDMA,是4G蜂窝无线通信系统上行链路的一种很有前途的空中接口。它使多径信道的均衡和由此产生的干扰在低复杂性下可能得到缓解,从而使CDMA所固有提供的高容量成为可能。本文提出了一种将SC-CDMA与空时分组编码(STBC)相结合的多发射天线空中接口,以增强链路的鲁棒性。与现有的空中接口在芯片级执行STBC编码,使其只适用于下行链路相反,STBC编码在符号级执行,使其也适用于上行链路。为了对天线和用户信号进行最优检测,设计了一种基于最小均方误差(MMSE)准则的联合检测器。通过利用通道的循环平稳性,大大降低了联合检测器的复杂性。分析表明,在由匹配滤波器组成的线性MMSE联合检测器的第一级输出处,天线间干扰被消除了。假设典型的室外信道,通过在单天线系统上使用两个发射天线,可以获得4 dB的信噪比(SNR)增益
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STBC for uplink single-carrier CDMA with equalization in the frequency domain
Single-carrier code division multiple access (SC-CDMA), also named cyclic-prefix CDMA in the literature, is a promising air interface for the uplink of the 4G cellular wireless communication systems. It enables the high capacity intrinsically offered by CDMA by making the equalization of the multipath channels and the mitigation of the resulting interference possible at a low complexity. This paper proposes a new air interface that combines SC-CDMA with space time block coding (STBC) across multiple transmit antennas in order to robustify the link. Contrary to existing air interfaces that perform the STBC encoding at the chip level, making them only applicable to the downlink, the STBC encoding is performed at the symbol level, making it also applicable to the uplink. In order to optimally detect the antenna and user signals, a joint detector optimized according to the minimum mean square error (MMSE) criterion is designed. By exploiting the cyclo-stationarity of the channels, the complexity of the joint detector is significantly reduced. It is analytically shown that the inter-antenna interference is canceled out at the output of the first stage of the linear MMSE joint detector, consisting of a matched filter. Assuming typical outdoor channels, a gain of 4 dB signal-to-noise-ratio (SNR) is achieved by the use of two transmit antennas over the single antenna system
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