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Constant-Envelope Space-Time Shift Keying

机译:恒定包络时空移位键控

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From the power amplifier's perspective, the peak-to-average power ratio (PAPR) is of essential importance, especially for both single-RF and reduced-RF multiple-input multiple-output (MIMO) single-carrier schemes. In this context, many of the diversity-oriented index modulation schemes-including the full-RFspace-time shift keying (STSK) and the single-RF asynchronous STSK (ASTSK) that invoke randomized signals-exhibit eroded energy-efficiency. To circumvent this problem, we propose a holistic signal construction approach for single-RF, reduced-RF, and full-RF MIMO setups, which always achieve both perfect 0 dB PAPR transmission and inter-channel interference (ICI) free signal detection. More explicitly, first of all, we conceive a new family of single-RF constant-envelope ASTSK (CE-ASTSK), which is capable of substantially outperforming conventional spatial modulation (SM) in both Rayleigh fading and Ricean fading associated with increasing line-of-sight (LoS) power. Second, we propose the new full-RF CE-STSK concept, which is capable of outperforming the orthogonal space-time block codes (STBCs) without either increasing PAPR or imposing ICI. This is particularly beneficial because the conventional linear dispersion code (LDC) approaches always compromise the orthogonality of STBC and hence impose ICI. Third, we also conceive the reduced-RF versions of CE-STSK, which outperform both generalized spatial modulation (GSM) and space-time block coded spatial modulation (STBC-SM). Finally, the proposed schemes are intrinsically amalgamated with turbo detection assisted channel coding, which further confirms the superiority of CE-ASTSK and CE-STSK over SM and STBC in the single-RF and full-RF modes, respectively.
机译:从功率放大器的角度来看,峰均功率比(PAPR)至关重要,特别是对于单RF和降低RF多输入多输出(MIMO)单载波方案。在这种情况下,许多面向分集的索引调制方案,包括调用随机信号的全RF空时移键控(STSK)和单RF异步STSK(ASTSK),都表现出侵蚀的能效。为了解决这个问题,我们提出了一种针对单RF,缩减RF和全RF MIMO设置的整体信号构建方法,该方法始终实现完美的0 dB PAPR传输和无通道间干扰(ICI)信号检测。更明确地说,首先,我们构想了一个新的单RF恒定包络ASTSK(CE-ASTSK)系列,该系列在与瑞利衰落和Ricean衰落相关的线路空间增加方面,均明显优于传统的空间调制(SM)。视力(LoS)。其次,我们提出了新的全RF CE-STSK概念,该概念能够胜过正交空时分组码(STBC),而无需增加PAPR或施加ICI。这是特别有益的,因为常规的线性色散码(LDC)方法始终会损害STBC的正交性并因此施加ICI。第三,我们还设想了CE-STSK的简化RF版本,其性能优于广义空间调制(GSM)和空时分组编码空间调制(STBC-SM)。最后,所提出的方案在本质上与涡轮检测辅助信道编码合并,这进一步证实了CE-ASTSK和CE-STSK分别在单RF和全RF模式下优于SM和STBC。

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