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首页> 外文期刊>IEEE Transactions on Communications >Reduced-Complexity Receiver Structures for Space–Time Bit-Interleaved Coded Modulation Systems
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Reduced-Complexity Receiver Structures for Space–Time Bit-Interleaved Coded Modulation Systems

机译:时空比特交织编码调制系统的降低复杂度的接收器结构

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Transmission efficiency in radio channels can be considerably improved by using multiple transmit and receive antennas and employing a family of schemes called space-time (ST) coding. Both extended range and/or improved bandwidth efficiency can be achieved, compared with a radio link with a single transmit and receive antenna. Bit-interleaved coded modulation schemes give diversity gains on fading channels with higher order modulation constellations combined with conventional binary convolutional codes also for the case of a single transmit and receive antenna radio link. In this paper, we study a family of flexible bandwidth-efficient ST coding schemes which combine these two ideas in a narrowband flat-fading channel and single-carrier modems. We address receiver complexity for the case of a large number of transmit antennas and higher order modulation constellations. Especially, we focus on practical configurations, where the number of transmit antennas is greater than that of receive antennas. Simplified receivers using tentative decisions are proposed and evaluated by means of simulations. Tradeoffs between complexity reduction and performance loss are presented. We emphasize systems that are of particular interest in applications where the number of transmit antennas exceeds the number of receive antennas. A system with four transmit antennas with an eight-fold complexity reduction and a performance loss of about 1 dB is demonstrated
机译:通过使用多个发射和接收天线并采用称为空时(ST)编码的一系列方案,可以显着提高无线电信道中的传输效率。与具有单个发送和接收天线的无线电链路相比,可以实现扩展范围和/或提高的带宽效率。比特交织的编码调制方案在单个发送和接收天线无线链路的情况下,在结合了常规二进制卷积码的情况下,在具有更高阶调制星座图的衰落信道上提供分集增益。在本文中,我们研究了一系列灵活的带宽有效的ST编码方案,这些方案在窄带平坦衰落信道和单载波调制解调器中结合了这两种思想。我们针对大量发射天线和高阶调制星座的情况解决了接收机的复杂性。特别是,我们专注于实际配置,其中发射天线的数量大于接收天线的数量。提出了使用暂定决策的简化接收机,并通过仿真进行了评估。提出了降低复杂性和性能损失之间的折衷方案。我们强调在发射天线数超过接收天线数的应用中特别感兴趣的系统。演示了具有四个发射天线的系统,其复杂度降低了八倍,性能损失约为1 dB

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