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Blind Channel Estimation in Ambient Backscatter Communication Systems with Multiple-Antenna Reader

机译:多天线阅读器的环境背向散射通信系统中的盲信道估计

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Ambient backscatter exploits radio frequency (RF) signals to enable passive devices such as tags or sensors to communicate with readers, which has fascinating application for Internet of Things (IoT). The majority of the existing studies assume that channel state information (CSI) is perfectly acquired. Nevertheless, in ambient backscatter systems, the environmental RF signals are unknown at reader and thus may not serve as pilots. Therefore, the traditional channel estimators that routinely require pilots are not acceptable. In this paper, we focus on the problem of channel estimation with no pilots in ambient backscatter systems with multiple-antenna reader. Specifically, a blind channel estimator based on the eigenvalue decomposition (EVD) of the covariance matrix of the received signals is proposed, and the corresponding Cramér-Rao lower bounds (CRLBs) are derived. Simulation results are also provided to corroborate theoretical analysis.
机译:环境背向散射利用射频(RF)信号来使无源设备(例如标签或传感器)与阅读器进行通信,这在物联网(IoT)方面具有引人入胜的应用。现有的大多数研究都假设已完全获取了信道状态信息(CSI)。但是,在环境反向散射系统中,环境RF信号在读取器中是未知的,因此可能无法充当导频。因此,通常需要飞行员的传统信道估计器是不可接受的。在本文中,我们关注于具有多天线读取器的环境反向散射系统中没有导频的信道估计问题。具体而言,提出了一种基于接收信号协方差矩阵的特征值分解(EVD)的盲信道估计器,并推导了相应的Cramér-Rao下界(CRLB)。还提供了仿真结果以证实理论分析。

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