基于MPSK射频源的环境后向散射通信半盲接收机

Youyou Zhang, Qianqian Zhang, Ying-Chang Liang, P. Kam
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引用次数: 6

摘要

环境反向散射通信(AmBC)是一种很有前途的节能和频谱高效的物联网通信技术。在AmBC系统中,由于直接链路干扰强,且难以获取信道状态信息(CSI),使得物联网设备符号的检测变得困难。本文提出了一种半盲接收机,它包括半盲信道估计器和直接链路平均检测器(DL-AD)。半盲信道估计器仅依赖物联网设备的两个导频符号来指示不同的CSI,而不需要射频源导频,可以消除射频源符号的影响。DL-AD基于对数似然比检验。仿真结果表明,该半盲接收机与先前提出的星座学习(CL)接收机相比具有非常接近的误差概率性能,且比CL接收机更简单。我们还提出了半盲接收机的迭代版本,该版本的性能得到了改进,如仿真所示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Semi-Blind Receiver for Ambient Backscatter Communications with MPSK RF Source
Ambient backscatter communication (AmBC) is a promising technology for energy-and spectrum-efficient Internet of Things (IoT) communication. In an AmBC system, due to the strong direct link interference and the difficulty in acquiring the channel state information (CSI), the detection of IoT device symbol becomes difficult. In this paper, we propose a semi-blind receiver, which includes the semi-blind channel estimator and the direct-link-averaging detector (DL-AD). The semi-blind channel estimator only relies on two pilot symbols from the IoT device to indicate different CSI without the RF source pilots, and can eliminate the effect of the RF source symbols. The DL-AD is based on the log likelihood ratio test. The simulation results show that the semi-blind receiver has very similar error probability performance compared with the constellation learning (CL) receiver that we proposed earlier, and it is simpler than the CL receiver. We also propose an iterative version of the semiblind receiver that has improved performance as shown in simulations.
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