基于多维正交匹配追踪的ris辅助毫米波联合定位与信道估计

Murat Bayraktar, J. Palacios, N. G. Prelcic, C. Zhang
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引用次数: 3

摘要

ris辅助毫米波无线系统得益于对阻塞的鲁棒性和增强的覆盖。在本文中,我们研究了RIS作为通信副产品提供增强的定位能力的能力。我们考虑稀疏重建算法来获得映射到位置信息的高分辨率信道估计。在RIS辅助毫米波系统中,由于RIS元件数量多、通信阵列大,稀疏恢复的复杂性成为瓶颈。我们提出了一种多维正交匹配追踪策略,用于ris辅助毫米波系统的压缩信道估计。我们展示了该算法如何基于在一组独立字典而不是单个大字典上计算投影,从而在降低复杂性的情况下实现高精度信道估计。我们还将此策略与不依赖于LoS路径到达的绝对时间的定位方法相结合。在一个真实的三维室内场景下的定位结果表明,ris辅助无线系统也可以从定位精度的显着提高中受益。
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Multidimensional Orthogonal Matching Pursuit-based RIS-aided Joint Localization and Channel Estimation at mmWave
RIS-aided millimeter wave wireless systems benefit from robustness to blockage and enhanced coverage. In this paper, we study the ability of RIS to also provide enhanced localization capabilities as a by-product of communication. We consider sparse reconstruction algorithms to obtain high resolution channel estimates that are mapped to position information. In RIS-aided mmWave systems, the complexity of sparse recovery becomes a bottleneck, given the large number of elements of the RIS and the large communication arrays. We propose to exploit a multidimensional orthogonal matching pursuit strategy for compressive channel estimation in a RIS-aided millimeter wave system. We show how this algorithm, based on computing the projections on a set of independent dictionaries instead of a single large dictionary, enables high accuracy channel estimation at reduced complexity. We also combine this strategy with a localization approach which does not rely on the absolute time of arrival of the LoS path. Localization results in a realistic 3D indoor scenario show that RIS-aided wireless system can also benefit from a significant improvement in localization accuracy.
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