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Active Phased Array Radar-based 2D Beamspace MUSIC Channel Estimation for an Integrated Radar and Communication System

机译:集成雷达和通信系统的基于有源相控阵雷达的二维波束空间MUSIC信道估计

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摘要

The integration of radar and communication system can reduce the size and weight of equipment, and enable multiple radars effectively share information to realize radar communication networks. Especially in the military, it can significantly improve the efficiency of future informatization war. Phased array radars and wireless communication systems are well integrated due to similar hardware architecture and implementation techniques. Based on the active phased array radar and the parameterized multipath channel model, the channel matrix estimation problem is transformed into the parameter estimation of the path directions and gains. In this paper, we propose a scheme to estimate the path directions, including the angles of departure (AOD) and angles of arrival (AOA), by the two-dimensional beamspace multiple signal classification (2D-MUSIC) method, and estimate the path gains by the least squares (LS) method. The experimental results demonstrate that the proposed scheme is feasible and has further improved performance compared with the classic least squares (LS) method and the orthogonal matching pursuit (OMP) method.
机译:雷达与通信系统的集成可以减小设备的尺寸和重量,并使多个雷达有效地共享信息以实现雷达通信网络。特别是在军事领域,它可以显着提高未来信息化战争的效率。由于类似的硬件架构和实现技术,相控阵雷达和无线通信系统已很好地集成在一起。基于有源相控阵雷达和参数化多径信道模型,将信道矩阵估计问题转化为路径方向和增益的参数估计。在本文中,我们提出了一种通过二维波束空间多信号分类(2D-MUSIC)方法估计路径方向(包括出射角(AOD)和到达角(AOA))的方案,并估计路径通过最小二乘(LS)方法获得增益。实验结果表明,与经典最小二乘法和正交匹配追踪法相比,该方案是可行的,并且性能得到了进一步提高。

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