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Channel Estimation for Ambient Backscatter Systems over Frequency-Selective Channels

机译:选频信道上环境反向散射系统的信道估计

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Recently, ambient backscatter has attracted much attention since it enables battery-free devices to communicate with other devices by utilizing environmental radio frequency signals. Existing studies about ambient backscatter often assume flat fading channels. In fact, most practical channels are frequency-selective. Thus, in this paper, we consider the ambient backscatter communication systems over frequency-selective channels and focus on the problem of channel estimation. Specifically, we first adopt the least square (LS) algorithm to obtain the estimates of channel parameters when the tag is in different states. Next, an iterative estimator is proposed to improve the estimation performance. In addition, the Cramér-Rao Lower Bounds (CRLBs) for different channel parameters are derived to evaluate the mean square error (MSE) performance. Finally, simulation results are provided to corroborate the proposed studies.
机译:近来,环境反向散射已经引起了很多关注,因为它使无电池设备能够通过利用环境射频信号与其他设备进行通信。现有的有关环境背向散射的研究通常假设平坦的衰落信道。实际上,大多数实用频道是频率选择的。因此,在本文中,我们考虑了频率选择性信道上的环境反向散射通信系统,并将重点放在信道估计问题上。具体来说,当标签处于不同状态时,我们首先采用最小二乘(LS)算法获得信道参数的估计值。接下来,提出了一种迭代估计器,以提高估计性能。此外,还导出了不同通道参数的Cramér-Rao下界(CRLB),以评估均方误差(MSE)性能。最后,提供了仿真结果以证实所提出的研究。

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