论文标题

与极大的透镜天线阵列的通信和定位

Communication and Localization with Extremely Large Lens Antenna Array

论文作者

Yang, Jie, Zeng, Yong, Jin, Shi, Wen, Chao-Kai, Xu, Pingping

论文摘要

通过准确的本地化和无线环境传感实现高速沟通已成为第五代和第六代细胞系统的重要趋势。将天线阵列扩展到非常大的规模是实现此类目标的潜在技术。但是,超庞大的工作天线可显着提高系统的计算复杂性。由镜头天线阵列的固有优势在降低系统复杂性中的固有优势,我们考虑了与\ uline {ex}的通信和本地化问题,{ex} extrance the the the the the the the thement {ex}我们称之为“ exlens”。由于辐射近场的特性出现在设置中,因此我们以球形波得出了透镜天线阵列的闭合形式阵列响应,其中包括基于均匀平面波获得的阵列响应作为特殊情况。我们的派生结果揭示了Exlens的能量聚焦特性的窗口效应,这表明Exlens在位置传感和多用户通信方面具有巨大的潜力。我们还为位置和通道参数估计提出了一种有效的方法,该方法能够达到接近Cramér-Rao下限的定位性能。最后,我们研究了Exlens的多用户沟通性能,可为近场和远场用户共存。数值结果证明了所提出的通道估计方法的有效性,并表明,与均匀的线性阵列相比,具有最小平方误差接收器接收器最小均方根误差接收器可实现显着的光谱效率增长和复杂性和成本降低。

Achieving high-rate communication with accurate localization and wireless environment sensing has emerged as an important trend of beyond-fifth and sixth generation cellular systems. Extension of the antenna array to an extremely large scale is a potential technology for achieving such goals. However, the super massive operating antennas significantly increases the computational complexity of the system. Motivated by the inherent advantages of lens antenna arrays in reducing system complexity, we consider communication and localization problems with an \uline{ex}tremely large \uline{lens} antenna array, which we call "ExLens". Since radiative near-field property emerges in the setting, we derive the closed-form array response of the lens antenna array with spherical wave, which includes the array response obtained on the basis of uniform plane wave as a special case. Our derivation result reveals a window effect for energy focusing property of ExLens, which indicates that ExLens has great potential in position sensing and multi-user communication. We also propose an effective method for location and channel parameters estimation, which is able to achieve the localization performance close to the Cramér-Rao lower bound. Finally, we examine the multi-user communication performance of ExLens that serves coexisting near-field and far-field users. Numerical results demonstrate the effectiveness of the proposed channel estimation method and show that ExLens with a minimum mean square error receiver achieves significant spectral efficiency gains and complexity-and-cost reductions compared with a uniform linear array.

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