研究了一种分组编码的ZCZ-CDMA高速处理方案

Sho Kuroda, S. Matsufuji, Y. Ida, Takahiro Matsumoto
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引用次数: 1

摘要

一种准同步CDMA方案(BC-ZCZ-CDMA)采用具有零相关带的扩频码(ZCZ码)和带导频符号辅助信道估计的Rake接收机分组编码技术,几乎可以消除多通瑞利衰落信道上的多址干扰和码间干扰(ISI)。在大时延、高速实时传输的情况下,为了去除MAI和ISI,需要增大块大小K。而在Rake接收器中,逆矩阵的计算占用了一束传输数据符号数所对应的块大小的立方阶的时间,即O(K3)。本文讨论了LZCZ序列分配给用户的BC-ZCZ-CDMA,并研究了在多径瑞利衰落信道下的误码率性能。作为最终结果,用户数量减少,但计算时间变为O((K/L)3)。此外,还可以有效地设计导频信号,从而简化整个系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On a block coding ZCZ-CDMA scheme with high-speed processing
A quasi-synchronous CDMA scheme using a spreading code with a zero correlation zone called ZCZ code and a block coding technique with the Rake receiver with the pilot-symbol-aided channel estimation, which is called BC-ZCZ-CDMA, can almost remove the multiple access interference (MAI) and inter symbol interference (ISI) over multipass Rayleigh fading channel. In large delay spread with high-speed real-time transmission, it is necessary to increase the block size K in order to remove MAI and ISI. However the calculation of the inverse matrix in the Rake receiver lakes time of the cube order of the block size corresponding to the number of data symbols transmitted in one bundle, i.e., O(K3). This paper discusses BC-ZCZ-CDMA that LZCZ sequences is assigned to a user, and investigates the bit error rate performance over a mullipath Rayleigh fading channel. As final results, the number of users decreases, but the calculation time becomes O((K/L)3). Furthermore a pilot signal can be designed effectively, and the overall system will be simplified.
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