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Performance analysis of convolutionally coded DS-CDMA systems with spatial and temporal channel correlations

机译:具有时空信道相关性的卷积编码DS-CDMA系统的性能分析

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Combined spatial and temporal processing has been shown to increase the potential link capacity enormously for wireless communication systems, especially when the channels between different transmit and receive antenna pairs are uncorrelated. We consider both spatial and temporal channel correlations that may be encountered in space-time processing and present the performance analysis of convolutionally coded direct-sequence code-division multiple-access systems. An upper bound for the average bit-error probability (P~/sub b/) is derived for the case of perfect channel estimation, and an analytical approximation for P~/sub b/ is derived in the case of erroneous channel estimates. The analytical approach is general enough to be applicable to various space- and time-diversity situations, such as wideband multipath channels and antenna arrays.
机译:业已证明,空间和时间的组合处理可以极大地增加无线通信系统的潜在链路容量,尤其是当不同的发射和接收天线对之间的信道不相关时。我们考虑了时空处理中可能遇到的空间和时间信道相关性,并提出了卷积编码直接序列码分多址系统的性能分析。对于完美信道估计,推导平均误码概率的上限(P_ / sub b /),而在信道估计错误的情况下,推导P_ / sub b /的解析近似。这种分析方法足够通用,可适用于各种空间和时间分集情况,例如宽带多径信道和天线阵列。

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