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Symmetry-Embedded Spreading Sequences for Multicarrier CDMA

机译:多载波CDMA系统的对称嵌入扩频序列

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It was shown by Slimane that the bit error rate (BER) performance of the downlink of multicarrier code-division multiple-access (MC-CDMA) systems can be improved significantly by employing quadrature spreading sequences instead of binary Walsh-Hadamard sequences. Inspired by Slimane's work, we propose a class of complex-valued spreading sequences, which are mathematically derivable from the Kronecker product of some basic matrices. The good algebraic structure in the proposed spreading sequences, when applied in a BPSK based MC-CDMA system, can be exploited for multiple access interference (MAI) suppression, for order-2 diversity combining, and for the reduction of peak-to-average power ratio. The new spreading sequences outperform the Slimane's quadrature sequences, as evidenced by various numerical results.
机译:Slimane证明,通过采用正交扩展序列而不是二进制Walsh-Hadamard序列,可以显着改善多载波码分多址(MC-CDMA)系统下行链路的误码率(BER)性能。受Slimane的工作启发,我们提出了一类复数值扩展序列,这些序列在数学上可以从某些基本矩阵的Kronecker乘积推导而来。当在基于BPSK的MC-CDMA系统中应用时,所提议的扩展序列中的良好代数结构可用于多址干扰(MAI)抑制,2阶分集合并以及峰均比降低功率比。各种数值结果证明,新的扩展序列优于Slimane的正交序列。

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