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Low Complexity Adaptive Design for Full-Diversity Full-Rate Space-Time Codes

机译:全分集全速率空时码的低复杂度自适应设计

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Full-diversity full-rate (FDFR) space-time codes for open-loop multiple antenna systems achieve both high data rate and good performance but come with very high decoding complexity. In this paper, we propose a low-complexity adaptive FDFR design for closed-loop multiple-input multiple-output systems. With only partial channel subspace knowledge at the transmitter, we adapt the open-loop FDFR code to the channel to maintain the special layer structure of the code at the receiver. That special layer structure enables us to decouple the joint detection over dimension C~(N_(t)~(2)) into N_(t) individual decoders of dimension C~(N_(t)), where N_(t) is the number of transmit antennas. This can also be seen as combining the channel diagonalization with signal diversity rotation. The performance of the proposed scheme is analyzed, and it is shown that the full diversity property is maintained in the adaptive design. Adaptive power loading is also incorporated to further exploit channel state information in term of the knowledge of the singular values of the channel. The optimal loading schemes are derived for systems with linear receivers.
机译:用于开环多天线系统的全分集全速率(FDFR)时空码既可实现高数据速率,又可实现良好的性能,但解​​码复杂性却很高。在本文中,我们为闭环多输入多输出系统提出了一种低复杂度的自适应FDFR设计。在发射机处只有部分信道子空间知识的情况下,我们使开环FDFR代码适应该信道,以在接收机处维持该代码的特殊层结构。这种特殊的层结构使我们能够将维度C〜(N_(t)〜(2))上的联合检测解耦为维度C〜(N_(t))的N_(t)个独立解码器,其中N_(t)是发射天线数。这也可以看作是将通道对角化与信号分集旋转相结合。对所提方案的性能进行了分析,结果表明在自适应设计中保持了全分集特性。还结合自适应功率负载以根据信道的奇异值的知识来进一步利用信道状态信息。对于具有线性接收器的系统,得出了最佳的加载方案。

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