首页> 外文期刊>IEE Proceedings. Part I, Communications >Transmitter precoding in downlink MC-CDMA systems over frequency-selective Rayleigh fading channels
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Transmitter precoding in downlink MC-CDMA systems over frequency-selective Rayleigh fading channels

机译:选频瑞利衰落信道上下行MC-CDMA系统中的发射机预编码

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摘要

A transmitter-based linear precoding technique is considered for downlink multicarrier code division multiple access systems. The key idea is to shift the required signal processing to the base station, where power and computational resources are plentiful, thus simplifying the receiver complexity and extending the battery life of mobile terminals. The multiple access interference (MAI) resulting from the frequency-selective channel inevitably limits the system performance. The minimum mean square error criterion is employed to optimise the linear transformation at the transmitter subject minimising the total transmitted energy in order to presuppress the MAI before the transmission. Two types of transmitter precoders are investigated in uncorrelated and correlated frequency-selective Rayleigh fading channels; one is combined with equal gain combining (PRE-EGC) and the other with maximum ratio combining (PRE-MRC) at the receiver. Numerical results show that the PRE-EGC can provide the same performance to all users and outperform the PRE-MRC. More importantly, the performance of the former is comparable to, or superior to, receiver-based techniques, such as the decorrelating detector using EGC (DEC-EGC) and MRC (DEC-MRC), provided the channel state information of all users is slowly time-varying and known to the transmitter.
机译:对于下行链路多载波码分多址系统,考虑了基于发射机的线性预编码技术。关键思想是将所需的信号处理转移到功率和计算资源丰富的基站,从而简化了接收机的复杂性并延长了移动终端的电池寿命。频率选择信道导致的多址干扰(MAI)不可避免地限制了系统性能。最小均方误差准则用于优化发射器处的线性变换,使总发射能量最小,以便在发射之前预先抑制MAI。在不相关和相关的频率选择性瑞利衰落信道中研究了两种类型的发射机预编码器;一个在接收机处与等增益合并(PRE-EGC)结合,另一个与最大比率合并(PRE-MRC)结合。数值结果表明,PRE-EGC可以为所有用户提供相同的性能,并且胜过PRE-MRC。更重要的是,前者的性能可与基于接收器的技术相媲美或优于基于接收器的技术,例如使用EGC(DEC-EGC)和MRC(DEC-MRC)的去相关检测器,前提是所有用户的信道状态信息均为时变缓慢,并为发射机所知。

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