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Absolute Amplitude Differential Phase Spatial Modulation and Its Non-Coherent Detection Under Fast Fading Channels

机译:快速衰落通道下绝对幅度差分相空间调制及其非相干检测

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Amplitude phase shift keying (APSK) aided differential spatial modulation (APSK-DSM) is a multiple-input-multiple-output wireless transmission technique which not only has the desirable features of differential spatial modulation (DSM) but also has a higher spectrum efficiency than DSM. However, the error propagation problem and the violation of the quasi-static channel assumption in conventional APSK-DSM design will cause significant performance loss, especially in undesirable channel conditions. Besides, the maximum-likelihood detection based on the traditional block-by-block search has a complexity that grows exponentially with the block size, which becomes intractable in systems with large transmit antenna numbers. To overcome those drawbacks, we propose a novel transmission scheme named the absolute amplitude differential phase spatial modulation (AADP-SM) in this paper. AADP-SM is able to alleviate the error propagation problem and achieve a near-coherent performance by invoking multiple previous blocks in the current detection. By taking into account the channel fading rate, AADP-SM is also more robust in fast-fading channels than APSK-DSM. A novel non-coherent detection algorithm is proposed for AADP-SM to reduce the exponential detection complexity to a polynomial order. Finally, we show through simulation that AADP-SM is tolerable to imperfect information about the channel statistics.
机译:幅度相移键控(APSK)辅助差分空间调制(APSK-DSM)是多输入多输出无线传输技术,其不仅具有差分空间调制(DSM)的所需特征,而且还具有比较高的频谱效率DSM。然而,误差传播问题和违反传统APSK-DSM设计中的准静态信道假设将导致显着的性能损失,尤其是在不希望的信道条件下。此外,基于传统的逐个块搜索的最大似然检测具有与块大小呈指数增长的复杂性,这在具有大发射天线号码的系统中变得棘手。为了克服这些缺点,我们提出了一种名为本文的绝对幅度差分期空间调制(AADP-SM)的新型传输方案。 AADP-SM能够通过调用当前检测中的多个先前块来缓解错误传播问题并实现近三相性能。通过考虑到频道衰落率,AADP-SM在快速衰落的通道中也比APSK-DSM更强大。提出了一种新的非相干检测算法,用于将ADP-SM降低到多项式顺序的指数检测复杂度。最后,我们通过模拟显示AADP-SM可以容忍不完美有关频道统计信息的信息。

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