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An Efficient Differential Space-time Modulation Method Based on Amicable Orthogonal Design

机译:基于和合正交设计的高效差分时空调制方法

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摘要

The authors propose an amicable-orthogonal-design-based differential space-time block code (ADSTBC) for multiple antennas. Compared with the existing differential modulation designs, their scheme imposes no restrictions on underlying signal constellation, and therefore can improve the spectral efficiency by exploiting efficient modulation techniques such as QAM and APSK. They then derive a non-coherent maximum-likelihood decoder (MLD) for flat Rayleigh fading channels. The amicable orthogonal property of data matrices assures that MLD has very low bit error rate and linear decoding complexity. Particularly, in two special cases of ADSTBC, the simplified MLDs which can greatly reduce the implementation cost are derived.
机译:作者提出了一种用于多个天线的友好正交设计的差分空间块代码(ADSTBC)。与现有的差分调制设计相比,它们的方案对底层信号星座施加没有限制,因此可以通过利用QAM和APSK等有效调制技术来提高光谱效率。然后,它们为扁平瑞利衰落通道推导出非相干的最大似然解码器(MLD)。数据矩阵的可友好的正交特性确保MLD具有非常低的误码率和线性解码复杂度。特别是,在adstbc的两个特殊情况下,推导出可以大大降低实施成本的简化MLD。

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