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Variable-rate variable-power MQAM for fading channels

机译:衰落信道的可变速率可变功率MQAM

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We propose a variable-rate and variable-power MQAM modulation scheme for high-speed data transmission over fading channels. We first review results for the Shannon capacity of fading channels with channel side information, where capacity is achieved using adaptive transmission techniques. We then derive the spectral efficiency of our proposed modulation. We show that there is a constant power gap between the spectral efficiency of our proposed technique and the channel capacity, and this gap is a simple function of the required bit-error rate (BER). In addition, using just five or six different signal constellations, we achieve within 1-2 dB of the maximum efficiency using unrestricted constellation sets. We compute the rate at which the transmitter needs to update its power and rate as a function of the channel Doppler frequency for these constellation sets. We also obtain the exact efficiency loss for smaller constellation sets, which may be required if the transmitter adaptation rate is constrained by hardware limitations. Our modulation scheme exhibits a 5-10-dB power gain relative to variable-power fixed-rate transmission, and up to 20 dB of gain relative to nonadaptive transmission. We also determine the effect of channel estimation error and delay on the BER performance of our adaptive scheme. We conclude with a discussion of coding techniques and the relationship between our proposed modulation and Shannon capacity.
机译:我们提出了一种用于在衰落信道上进行高速数据传输的可变速率和可变功率MQAM调制方案。我们首先使用信道边信息来回顾衰落信道的香农容量的结果,其中使用自适应传输技术来实现容量。然后,我们得出我们提出的调制的频谱效率。我们表明,在我们提出的技术的频谱效率和信道容量之间存在恒定的功率间隙,并且该间隙是所需误码率(BER)的简单函数。此外,仅使用五个或六个不同的信号星座图,我们就可以使用不受限制的星座图集在最大效率的1-2 dB之内实现。对于这些星座图,我们根据信道多普勒频率计算发射机需要更新其功率和速率的速率。我们还获得了较小星座集的准确效率损失,如果发射机的自适应速率受到硬件限制的话,这可能是必需的。我们的调制方案相对于可变功率固定速率传输展现出5-10 dB的功率增益,相对于非自适应传输展现出高达20 dB的增益。我们还确定了信道估计误差和延迟对自适应方案的BER性能的影响。我们以编码技术以及我们提出的调制与Shannon容量之间的关系作为讨论的结尾。

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