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Code and receiver design for the noncoherent fast-fading channel

机译:非相干快速衰落信道的代码和接收器设计

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This paper deals with the design of coding/modulation and demodulation/decoding schemes for single- or multiple-antenna systems with focus on fast-fading channels, where channel state information (CSI) is not available at the transmitter and the receiver. We explore two possible solutions for this channel with increasing degree of sophistication. The first one utilizes pilots at the transmitter and a simple and explicit noniterative channel estimation algorithm at the receiver. We show that this pilot-assisted system is exactly equivalent, in terms of performance analysis and design, to an appropriately "degraded" system having perfect CSI at the receiver. The second scheme utilizes pilots and a family of well-justified and simple suboptimal iterative detection/estimation algorithms. It is shown that when turbo-like codes are considered in conjunction with this pilot-assisted transmission scheme and the proposed receiver algorithm, the unitary constellations investigated in the literature are inferior to simple pilot-assisted constellations in both complexity and performance. Specific instances of the proposed systems (that use optimized irregular low-density parity-check outer codes) are designed. The design examples provided show that the proposed systems can achieve a good tradeoff between complexity and performance and can be used to bridge the gap between the high complexity/high-performance optimal scheme and low-complexity/mediocre performance noniterative estimation/coherent detection scheme.
机译:本文针对单天线或多天线系统的编码/调制和解调/解码方案进行设计,重点是快速衰落的信道,其中在发射机和接收机处都无法获得信道状态信息(CSI)。随着复杂程度的提高,我们探索了该渠道的两种可能的解决方案。第一个利用发射机处的导频和接收机处的简单明了的非迭代信道估计算法。我们显示,就性能分析和设计而言,该飞行员辅助系统与接收器处具有完美CSI的适当“降级”系统完全等效。第二种方案利用了飞行员和一系列合理的,简单的次优迭代检测/估计算法。结果表明,当将类似turbo的码与该导频辅助的传输方案和所提出的接收器算法一起考虑时,文献中研究的unit星座在复杂性和性能方面均不如简单的导频辅助星座。设计了拟议系统的特定实例(使用优化的不规则低密度奇偶校验外部代码)。所提供的设计实例表明,所提出的系统可以在复杂度和性能之间取得良好的折衷,并且可以用来弥补高复杂度/高性能最佳方案与低复杂度/中等性能非迭代估计/相干检测方案之间的差距。

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