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Monostatic Backscattering Detection by Multiantenna Reader

机译:多天线阅读器的单基地反向散射检测

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The limitations of backscatter communication (BSC) can be overcome by exploiting advantages of the multipleinput-multiple-output (MIMO) technology at the reader. In this paper we propose a novel maximum eigenvalue based BSC detection protocol for a monostatic MIMO reader to minimize the underlying bit error rate (BER). Specifically, two orthonormal sequences for the backscattering coefficients (BC) at the single-antenna tag are used to exploit the rank-one property of the cascaded BSC channels in monostatic settings for detection at the reader without requiring any help from the low-power tag in channel estimation. Lastly, the efficacy of the proposed detection protocol is numerically quantified while shedding key insights on the impact of the key simulation parameters like rice factor, orthonormal sequence length, array size, and signal-to-noise-ratio on the achievable BER.
机译:可以通过利用读取器上的多输入多输出(MIMO)技术的优势来克服反向散射通信(BSC)的局限性。在本文中,我们提出了一种新颖的基于最大特征值的BSC检测协议,用于单静态MIMO读取器,以最小化潜在的误码率(BER)。具体来说,单天线标签上反向散射系数(BC)的两个正交序列用于在单静态设置中利用级联BSC信道的秩一特性,以在读取器上进行检测,而无需低功率标签的任何帮助在信道估计中。最后,在对关键仿真参数(例如水稻因子,正交序列长度,阵列大小和信噪比)对可达到的BER的影响上散发出关键见解的同时,对提出的检测方案的功效进行了数值量化。

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