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Quasi-Synchronous CDMA Using Properly Scrambled Walsh Codes as User-Spreading Sequences

机译:使用正确加扰的沃尔什码作为用户扩展序列的准同步CDMA

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摘要

An orthogonal spreading code family based on scrambled Walsh–Hadamard (WH) sequences is proposed for quasi-synchronous (QS) code-division multiple-access (CDMA) systems. With $pm$ 1 chip offset, either the top or the bottom half rows of the WH matrix remain orthogonal if they are scrambled using the proposed scrambling patterns. With quadriphase scrambling applied on a quarter row of the WH matrix, the zero-correlation zone (ZCZ) is extended to $pm$3 chips. The proposed spreading codes satisfy the theoretical limit of code size for a given code length and ZCZ. Compared with existing spreading codes for QS-CDMA, the proposed spreading codes have several advantages: 1) A special procedure for code family construction is not needed; it only requires a simple modification to the scrambling sequence of the conventional CDMA, which employs WH sequences as user signatures. 2) Flexible code family size; the size can easily be extended for multicell applications without having to consider existing codes used. Moreover, if synchronization is guaranteed to be within $pm$1 chip, the code size can be doubled by allocating another quarter member of the WH sequence set. 3) The benefits of long code scrambling from the conventional cellular CDMA systems are inherited, such as robustness against interception and multiaccess interference randomization.
机译:针对准同步(QS)码分多址(CDMA)系统,提出了一种基于加扰的沃尔什·哈达玛(WH)序列的正交扩展码族。在$ pm $ 1码片偏移的情况下,如果使用建议的加扰模式对WH矩阵的上半行或下半行进行加扰,则它们保持正交。通过在WH矩阵的四分之一行上应用四相加扰,零相关区(ZCZ)扩展为$ pm $ 3芯片。对于给定的码长和ZCZ,建议的扩展码满足码长的理论极限。与现有的用于QS-CDMA的扩展码相比,所提出的扩展码具有以下优点:1)不需要特殊的代码族构造程序;它仅需要对常规CDMA的加扰序列进行简单的修改,该序列就将WH序列用作用户签名。 2)灵活的代码系列大小;它的大小可以轻松扩展到多单元应用,而无需考虑使用的现有代码。此外,如果保证同步在$ pm $ 1芯片内,则可以通过分配WH序列集的另一个四分之一成员来使代码大小加倍。 3)继承了传统蜂窝CDMA系统中长码加扰的好处,例如抗干扰的鲁棒性和多址干扰随机化。

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