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Optimal Channel Estimation for Reciprocity-Based Backscattering With a Full-Duplex MIMO Reader

机译:全双工MIMO读取器基于互易性的反向散射的最佳信道估计

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Backscatter communication (BSC) technology can enable ubiquitous deployment of low-cost sustainable wireless devices. In this paper, we investigate the efficacy of a full-duplex multiple-input-multiple-output reader for enhancing the limited communication range of monostatic BSC systems. As this performance is strongly influenced by the channel estimation (CE) quality, we first derive a novel least-squares estimator for the forward and backward links between the reader and the tag, assuming that reciprocity holds and K orthogonal pilots are transmitted from the first K antennas of an N antenna reader. We also obtain the corresponding linear minimum-mean square-error estimate for the backscattered channel. After defining the transceiver design at the reader using these estimates, we jointly optimize the number of orthogonal pilots and energy allocation for the CE and information decoding phases to maximize the average backscattered signal-to-noise ratio (SNR) for efficiently decoding the tag's messages. The unimodality of this SNR in optimization variables along with a tight analytical approximation for the jointly global optimal design is also discoursed. Lastly, the selected numerical results validate the proposed analysis, present key insights into the optimal resource utilization at reader, and quantify the achievable gains over the benchmark schemes.
机译:背向散射通信(BSC)技术可以实现低成本可持续无线设备的普遍部署。在本文中,我们研究了全双工多输入多输出阅读器对于增强单静态BSC系统有限的通信范围的功效。由于此性能受信道估计(CE)质量的强烈影响,因此我们首先推导了一种新颖的最小二乘估计器,用于假设阅读器与标签之间的向前和向后链接,并且假定互易保持并且从第一个发送了K个正交导频N个天线读取器的K个天线。我们还获得了反向散射信道的相应线性最小均方误差估计。在使用这些估计值在阅读器上定义了收发器设计之后,我们共同优化了正交导频的数量以及CE和信息解码阶段的能量分配,以最大化平均反向散射信噪比(SNR),从而有效地解码标签的消息。还讨论了此SNR在优化变量中的单峰性,以及对联合全局最优设计的严格解析近似。最后,选定的数值结果验证了所提出的分析,提供了读者对最佳资源利用的关键见识,并量化了基准方案可实现的收益。

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