首页> 外文期刊>Information Theory, IEEE Transactions on >Wideband Fading Channel Capacity With Training and Partial Feedback
【24h】

Wideband Fading Channel Capacity With Training and Partial Feedback

机译:具有培训和部分反馈的宽带衰落信道容量

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

We consider the capacity of a wideband fading channel with partial feedback, subject to an average power constraint. The channel is modeled as a set of parallel independent block Rayleigh fading subchannels with finite coherence time ($L$ channel uses). The transmitter probes a subset of subchannels during each coherence time by transmitting pilot sequences for channel estimation. For each subchannel probed, one bit of feedback indicates whether or not the channel gain exceeds a threshold allowing transmission. Our problem is to optimize jointly the training (both length and power), number of subchannels probed (probing bandwidth), and feedback threshold to maximize the achievable rate (lower bound on ergodic capacity) taking into account the subchannel estimation error. Optimizing the probing bandwidth balances diversity against the quality of the subchannel estimate. We show that the achievable rate increases as $S log L$, where $S$ is the signal-to-noise ratio, and exceeds the capacity with impulsive signaling (given by $S$) when $L$ exceeds a (positive) threshold value. Moreover, the optimal probing bandwidth scales as $S {{ L}over { log ^{2}L}}$ . In contrast, without feedback the optimal probing bandwidth for the probing scheme scales as $SL^{1/3}$ and the achievable rate converges to $S$, where the gap diminishes as $SL^{-1/3}$.
机译:考虑平均功率约束,我们考虑了具有部分反馈的宽带衰落信道的容量。该信道被建模为一组具有有限相干时间的并行独立块瑞利衰落子信道($ L $信道使用)。发射机通过发送用于信道估计的导频序列,在每个相干时间探测子信道的子集。对于每个探测的子信道,反馈的一位指示信道增益是否超过允许传输的阈值。我们的问题是在考虑子信道估计误差的情况下,共同优化训练(长度和功率),探测的子信道数(探测带宽)和反馈阈值,以最大化可达到的速率(遍历容量的下限)。优化探测带宽可以使分集与子信道估计的质量保持平衡。我们表明,可实现的速率随着$ S log L $的增加而增加,其中$ S $是信噪比,并且当$ L $超过(正)时超过脉冲信号的容量(由$ S $给出)。阈值。此外,最佳探测带宽的缩放比例为$ S {{L} over {log ^ {2} L}} $。相反,在没有反馈的情况下,用于探测方案的最佳探测带宽按比例缩放为$ SL ^ {1/3} $,并且可达到的速率收敛至$ S $,其中间隙减小为$ SL ^ {-1/3} $。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号