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Modulation Diversity in Fading Channels with a Quantized Receiver

机译:带有量化接收器的衰落信道中的调制分集

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摘要

In this paper, we address the design of codes which achieve modulation diversity in block fading single-input single-output (SISO) channels with signal quantization at the receiver. With an unquantized receiver, coding based on algebraic rotations is known to achieve maximum modulation coding diversity. On the other hand, with a quantized receiver, algebraic rotations may not guarantee gains in diversity. Through analysis, we propose specific rotations which result in the codewords having equidistant component-wise projections. We show that the proposed coding scheme achieves maximum modulation diversity with a low-complexity minimum distance decoder and perfect channel knowledge. Relaxing the perfect channel knowledge assumption we propose a novel channel training/estimation technique to estimate the channel. We show that our coding/training/estimation scheme and minimum distance decoding achieves an error probability performance similar to that achieved with perfect channel knowledge.
机译:在本文中,我们解决了在接收器处通过信号量化在块衰落单输入单输出(SISO)通道中实现调制分集的代码设计。对于未量化的接收机,已知基于代数旋转的编码实现最大的调制编码分集。另一方面,对于量化接收器,代数旋转可能无法保证分集增益。通过分析,我们提出了特定的旋转,从而导致码字具有等距的分量投影。我们表明,提出的编码方案通过低复杂度最小距离解码器和完善的信道知识实现了最大的调制分集。放宽对完美渠道知识的假设,我们提出了一种新颖的渠道培训/估算技术来估算渠道。我们表明,我们的编码/训练/估计方案和最小距离解码实现的错误概率性能类似于使用完善的信道知识获得的错误概率性能。

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