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Space-time chip equalization for maximum diversity space-time block coded DS-CDMA downlink transmission

机译:用于最大分集空时分组编码DS-CDMA下行链路传输的空时码片均衡

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In the downlink of DS-CDMA, frequency-selectivity destroys the orthogonality of the user signals and introduces multiuser interference (MUI). Space-time chip equalization is an efficient tool to restore the orthogonality of the user signals and suppress the MUI. Furthermore, multiple-input multiple-output (MIMO) communication techniques can result in a significant increase in capacity. This paper focuses on space-time block coding (STBC) techniques, and aims at combining STBC techniques with the original single-antenna DS-CDMA downlink scheme. This results into the so-called space-time block coded DS-CDMA downlink schemes, many of which have been presented in the past. We focus on a new scheme that enables both the maximum multiantenna diversity and the maximum multipath diversity. Although this maximum diversity can only be collected by maximum likelihood (ML) detection, we pursue suboptimal detection by means of space-time chip equalization, which lowers the computational complexity significantly. To design the space-time chip equalizers, we also propose efficient pilot-based methods. Simulation results show improved performance over the space-time RAKE receiver for the space-time block coded DS-CDMA downlink schemes that have been proposed for the UNITS and IS-2000 W-CDMA standards.
机译:在DS-CDMA的下行链路中,频率选择性破坏了用户信号的正交性,并引入了多用户干扰(MUI)。空时码片均衡是恢复用户信号正交性并抑制MUI的有效工具。此外,多输入多输出(MIMO)通信技术可能会导致容量显着增加。本文着重于空时分组编码(STBC)技术,旨在将STBC技术与原始的单天线DS-CDMA下行链路方案相结合。这导致了所谓的空时分组编码DS-CDMA下行链路方案,其中许多方案已在过去提出。我们关注于一种既能实现最大多天线分集又能实现最大多径分集的新方案。尽管只能通过最大似然(ML)检测来收集这种最大分集,但是我们通过空时码片均衡来追求次优检测,这大大降低了计算复杂度。为了设计时空码片均衡器,我们还提出了基于导频的高效方法。仿真结果表明,针对UNITS和IS-2000 W-CDMA标准提出的空时分组编码DS-CDMA下行链路方案,其空时RAKE接收机性能有所提高。

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