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Synchronous CDMA Based on the Cyclical Translations of a CAZAC Sequence

机译:基于Cazac序列的循环翻译的同步CDMA

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We introduce a new class of code sequences for synchronous CDMA, having in mind application to the downlink of cellular systems. The code that we propose is made by all the cyclical translations of what is called in the literature a CAZAC sequence, for example a Frank-Zadoff sequence. We show that, when the transmission channel is affected by multipath and noise, the proposed code allows multiuser interference to become cyclic intersymbol interference, provided that a cyclic prefix is appended to the multiplexed vector. Noticeably, the memory of the finite state machine that describes the ISI model is equal to memory of the multipath channel. The main advantage of our proposed system is that optimal detection is obtained by the classical Viterbi algorithm, which is much easier to implement than the optimal multiuser detector of classical CDMA schemes. Another advantage of our scheme is that it leads naturally to a signal processing architecture similar to that of OFDM systems, hence based on the efficient FFT/IFFT algorithm.
机译:我们向同步CDMA介绍了一类用于同步CDMA的代码序列,考虑到蜂窝系统的下行链路。我们提出的代码由文献中所谓的CAZAC序列所谓的所有循环翻译,例如弗兰克拉德序列。我们表明,当传输信道受多径和噪声的影响时,所提出的代码允许多用户干扰成为循环界面的干扰,只要循环前缀被附加到多路复用的向量。明显地,描述ISI模型的有限状态机的存储器等于多径信道的存储器。我们所提出的系统的主要优点是通过经典维特比算法获得最佳检测,这比经典CDMA方案的最佳多用户检测器实现更容易实现。我们的方案的另一个优点是它自然地引导到类似于OFDM系统的信号处理架构,从而基于高效的FFT / IFFT算法。

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