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Achievable Rates with Imperfect Transmitter Side Information Using a Broadcast Transmission Strategy

机译:使用广播传输策略,具有不完善的发射机侧信息的可达到速率

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摘要

rdquoWe investigate the performance of the broadcast approach for various fading distributions, which correspond to different models of partial transmit channel state information (CSI). The first model considered is the quantized limited feedback. In this model, the receiver can send as feedback only a finite number of bits describing the fading gain. We derive the optimal power allocation for the broadcast approach for the quantized feedback model. For a Rayleigh fading channel, numerical results here show that if the feedback word can be longer than one bit, the broadcasting gain becomes negligible, due to diminished channel uncertainty. The second partial transmit CSI model is a stochastic Gaussian model with mean and variance information, which is commonly used for modeling the channel estimation error. In a single-input single-output (SISO) channel, this model also corresponds to the Ricean fading distribution, for which we derive maximal achievable broadcasting rates. We further consider a multiple-input single-output (MISO) channel, and derive the optimal power allocation strategy in a broadcast approach. Numerical results here show that uniform power allocation is preferable over beamforming power allocation in the region where broadcasting gain over single level coding is non-negligible.
机译:rdquo我们研究了针对各种衰落分布的广播方法的性能,这些衰落分布对应于部分传输信道状态信息(CSI)的不同模型。考虑的第一个模型是量化的有限反馈。在这种模型中,接收机只能发送有限数量的描述衰落增益的比特作为反馈。我们为量化反馈模型的广播方法得出最佳功率分配。对于瑞利衰落信道,此处的数值结果表明,如果反馈字可以长于一位,则由于减小了信道不确定性,因此广播增益可忽略不计。第二部分发送CSI模型是具有均值和方差信息的随机高斯模型,通常用于对信道估计误差建模。在单输入单输出(SISO)通道中,此模型还对应于Ricean衰落分布,为此我们导出了最大可实现的广播速率。我们进一步考虑多输入单输出(MISO)通道,并通过广播方法得出最佳功率分配策略。此处的数值结果表明,在不可忽略单级编码的广播增益的区域中,均匀功率分配优于波束成形功率分配。

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