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Efficiently decoded full-rate space-time block codes

机译:有效解码的全速率空时分组码

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摘要

Space-time block codes with orthogonal structures typically provide full-diversity reception and simple receiver processing. However, rate-1 orthogonal codes for complex constellations have not been found for more than two transmit antennas. By using a genetic algorithm, rate-1 space-time block codes that accommodate very simple receiver processing at the cost of reduced diversity are designed in this paper for more than two transmit antennas. Simulation results show that evolved codes combined with efficient outer codes provide better performance over fading channels than minimum-decoding-complexity quasiorthogonal codes at typical operating signal-to-noise ratios. When the fading is more severe than Rayleigh fading, the spectral efficiency is specified, and an efficient outer code is used, evolved codes outperform orthogonal space-time block codes.
机译:具有正交结构的空时分组码通常提供全分集接收和简单的接收器处理。但是,对于两个以上的发射天线,尚未找到用于复杂星座的速率1正交码。通过使用遗传算法,本文针对两个以上的发射天线设计了速率为1的时空分组码,以减少分集为代价来适应非常简单的接收器处理。仿真结果表明,与典型工作信噪比下的最小解码复杂度准正交码相比,演进码与有效外码的结合在衰落信道上提供了更好的性能。当衰落比瑞利衰落更严重时,将指定频谱效率,并使用有效的外部码,演进码的性能优于正交空时分组码。

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