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Space-time block coding for single-carrier block transmission DS-CDMA downlink

机译:单载波块传输DS-CDMA下行链路的空时块编码

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The combination of space-time block coding (STBC) and direct-sequence code-division multiple access (DS-CDMA) has the potential to increase the performance of multiple users in a cellular network. However, if not carefully designed, the resulting transmission scheme suffers from increased multiuser interference (MUI), which dramatically deteriorates the performance. To tackle this MUI problem in the downlink, we combine two specific DS-CDMA and STBC techniques, namely single-carrier block transmission (SCBT) DS-CDMA and time-reversal STBC. The resulting transmission scheme allows for deterministic maximum-likelihood (ML) user separation through low-complexity code-matched filtering, as well as deterministic ML transmit stream separation through linear processing. Moreover, it can achieve maximum diversity gains of NTNR(L+1) for every user in the system, irrespective of the system load, where NT is the number of transmit antennas, NR the number of receive antennas, and L the order of the underlying multipath channels. In addition, it turns out that a low-complexity linear receiver based on frequency-domain equalization comes close to extracting the full diversity in reduced, as well as full load settings. In this perspective, we also develop two (recursive) least squares methods for direct equalizer design. Simulation results demonstrate the outstanding performance of the proposed transceiver compared to competing alternatives.
机译:空时分组编码(STBC)和直接序列码分多址(DS-CDMA)的组合具有提高蜂窝网络中多个用户性能的潜力。但是,如果设计不当,最终的传输方案会遭受多用户干扰(MUI)的增加,从而极大地降低性能。为了解决下行链路中的MUI问题,我们结合了两种特定的DS-CDMA和STBC技术,即单载波块传输(SCBT)DS-CDMA和时间反转STBC。最终的传输方案允许通过低复杂度代码匹配滤波实现确定性最大似然(ML)用户分离,以及通过线性处理实现确定性ML发送流分离。此外,它可以为系统中的每个用户实现最大的分集增益NTNR(L + 1),与系统负载无关,其中NT是发射天线的数量,NR是接收天线的数量,L是发射天线的数量。底层多路径通道。另外,事实证明,基于频域均衡的低复杂度线性接收器几乎可以提取缩减的全分集以及全负载设置。从这个角度出发,我们还开发了两种(递归)最小二乘法用于直接均衡器设计。仿真结果表明,与竞争产品相比,该收发器具有出色的性能。

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