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Soft-Decision Multiple-Symbol Differential Sphere Detection and Decision-Feedback Differential Detection for Differential QAM Dispensing with Channel Estimation in the Face of Rapidly Fading Channels

机译:软判决多符号差分球检测和决策反馈差分检测,用于在快速衰落通道的频道估计中分配差分QAM分配的差分检测

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摘要

Turbo detection performed by exchanging extrinsic information between the soft-decision QAM detector and the channel decoder is beneficial for the sake of exploring the bit dependency imposed both by modulation and by channel coding. However, when the soft-decision coherent QAM detectors are provided with imperfect channel estimates in rapidly fading channels, they tend to produce potentially unreliable LLRs that deviate from the true probabilities, which degrades the turbo detection performance. Against this background, in this paper, we propose a range of new soft-decision multiple-symbol differential sphere detection (MSDSD) and decision-feedback differential detection (DFDD) solutions for differential QAM (DQAM), which dispense with channel estimation in the face of rapidly fading channels. Our proposed design aims for solving the two inherent problems in soft-decision DQAM detection design, which have also been the most substantial obstacle in the way of offering a solution for turbo detected MSDSD aided differential MIMO schemes using QAM: 1) how to facilitate the soft-decision detection of the DQAM's amplitudes, which-in contrast to the DPSK phases-do not form a unitary matrix, and 2) how to separate and streamline the DQAM's soft-decision amplitude and phase detectors. Our simulation results demonstrate that our proposed MSDSD aided DQAM solution is capable of substantially outperforming its MSDSD aided DPSK counterpart in coded systems without imposing a higher complexity. Moreover, our proposed DFDD aided DQAM solution is shown to outperform the conventional solutions in literature. Our discussions on the important subject of coherent versus noncoherent schemes suggest that compared to coherent square QAM relying on realistic imperfect channel estimation, MSDSD aided DQAM may be deemed as a better candidate for turbo detection assisted coded systems operating at high Doppler frequencies
机译:通过探讨在软判决QAM检测器和信道解码器之间交换外部信息而执行的Turbo检测,对于探索调制和信道编码所带来的比特依赖性是有益的。但是,当在快速衰落的信道中为软判决相干QAM检测器提供不完善的信道估计时,它们会产生潜在的,不可靠的LLR,从而偏离真实概率,这会降低Turbo检测性能。在此背景下,本文针对差分QAM(DQAM)提出了一系列新的软决策多符号差分球检测(MSDSD)和决策反馈差分检测(DFDD)解决方案,这些解决方案无需在信道中进行信道估计。面对迅速衰落的渠道。我们提出的设计旨在解决软判决DQAM检测设计中的两个固有问题,这也是在为使用QAM的涡轮检测MSDSD辅助差分MIMO方案提供解决方案的方式中遇到的最大障碍:1)如何促进与DPSK相位相反,DQAM振幅的软判决检测不会形成单一矩阵; 2)如何分离和简化DQAM的软判决振幅和相位检测器。我们的仿真结果表明,我们提出的MSDSD辅助DQAM解决方案能够在编码系统中显着胜过其MSDSD辅助DPSK同类产品,而不会带来更高的复杂性。此外,我们提出的DFDD辅助DQAM解决方案表现出优于传统解决方案的文献。我们对相干方案与非相干方案的重要主题的讨论表明,与依赖于实际不完美信道估计的相干平方QAM相比,MSDSD辅助DQAM可能被认为是在高多普勒频率下运行的Turbo检测辅助编码系统的更好候选者

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