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A RAKE-Based Iterative Receiver for Space-Time Block-Coded Multipath CDMA

机译:空时分组编码多径CDMA的基于RAKE的迭代接收器

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摘要

A turbo multiuser receiver is proposed for space-time block and channel-coded code division multiple access (CDMA) systems in multipath channels. The proposed receiver consists of a first stage that performs detection, space-time decoding, and multipath combining followed by a second stage that performs the channel decoding. A reduced complexity receiver suitable for systems with large numbers of transmitter antennas is obtained by performing the space-time decoding along each resolvable multipath component and then diversity combining the set of space-time decoded outputs. By exchanging the soft information between the first and second stages, the receiver performance is improved via iteration. Simulation results show that while in some cases a noniterative space-time coded system may have inferior performance compared with a system without space-time coding in a multipath channel, proposed iterative schemes significantly outperform systems without space-time coding, even with only two iterations. Furthermore, the performance loss in the reduced-complexity receiver due to decoupling of interference suppression, space-time decoding, and multipath combining is very small for error rates of practical interest.
机译:提出了一种turbo多用户接收机,用于多径信道中的空时分组和信道编码的码分多址(CDMA)系统。所提出的接收机包括执行检测,空时解码和多径合并的第一阶段,其后是执行信道解码的第二阶段。通过沿着每个可解析的多径分量执行时空解码,然后通过分集组合时空解码输出的集合,可以获得适用于具有大量发射机天线的系统的降低了复杂度的接收机。通过在第一和第二阶段之间交换软信息,可以通过迭代来提高接收器性能。仿真结果表明,尽管在某些情况下,非迭代的时空编码系统与在多径信道中没有空时编码的系统相比性能较差,但所提出的迭代方案甚至比仅进行两次迭代的无空时编码的系统性能要好得多。 。此外,对于实际感兴趣的错误率,由于干扰抑制,空时解码和多径组合的解耦而导致的复杂度降低的接收机中的性能损失非常小。

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