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Opportunistic Sensing Using mmWave Communication Signals: A Subspace Approach

机译:使用MMWAVE通信信号的机会主义感应:子空间方法

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In this work, we study the joint detection and localization of multiple delay- and Doppler-spread targets through an opportunistic radar exploiting mmWave communication signals. The problem is formulated as the identification of an unknown number of active subspaces in a large family of subspaces, accounting for the possible positions of potential targets in the delay-Doppler domain: the resulting testing problem is composite and multi-hypothesis. At first, we derive a solution based on the generalized information criterion (GIC), whose complexity is however prohibitive; then, we propose an approximated form of the GIC-based receiver and derive two iterative data-adaptive strategies, both extracting and eliminating the superimposed back-scattered subspace signals one-by-one. Leveraging the IEEE 802.11ad standard, a short-range low-mobility application is discussed to validate the merits of the proposed procedures in terms of detection and localization capabilities, robustness to multi-target interference, and achievable resolution.
机译:在这项工作中,我们通过机会雷达利用MM波通信信号研究多个延迟和多普勒扩展目标的联合检测和定位。该问题的标识为识别大家子空间中未知数量的活性子空间,占延迟多普勒域中的潜在目标的可能位置:得到的测试问题是复合和多假设。首先,我们通过基于广义信息标准(GIC)来得出解决方案,其复杂性无论是令人禁止的;然后,我们提出了一种基于GIC的接收器的近似形式,并逐一提取和消除叠加的背散码空间信号的两个迭代数据自适应策略。利用IEEE 802.11ad标准,讨论了短程低移动性应用程序,以验证在检测和定位能力,鲁棒性对多目标干扰以及可实现的分辨率方面的拟议程序的优点。

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