Multi-Target Location for Intelligent Reflecting Surface Aided Radar System

Yang Zhao, Peng Chen, Z. Cao
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Abstract

The target location can be realized based on the estimated directions of arrival (DOAs) when using multiple arrays. However, this leads to the increase of radar system cost. Meanwhile, the location precision depends on the high accuracy of DOA estimations, which are usually with high computational complexity. In this paper, the problem of low-cost system and low-complexity DOA estimation method are addressed. First, a low-cost intelligent reflecting surfaces (IRSs) aided radar location system is developed, where only one fully functional receiving channel is adopted. Then, a novel nonconvex-based atomic norm minimization (NC-ANM) problem is formulated by exploiting the targets’ sparsity in the spatial domain to estimate the DOA more efficiently. After getting the DOA estimations, a multi-target location method is proposed. Simulation results show that the proposed NC-ANM method outperforms the compared methods in the DOA estimation with lower computational complexity and achieves accurate location in the IRSs aided system.
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智能反射表面辅助雷达系统的多目标定位
当使用多个阵列时,可以根据估计的到达方向(DOAs)来实现目标定位。然而,这导致了雷达系统成本的增加。同时,定位精度依赖于高度精确的DOA估计,而DOA估计通常具有很高的计算复杂度。本文研究了低成本系统和低复杂度DOA估计方法的问题。首先,开发了一种低成本的智能反射面(IRSs)辅助雷达定位系统,该系统仅采用一个全功能接收通道。然后,利用目标在空间域的稀疏性,提出了一种新的基于非凸的原子范数最小化(NC-ANM)问题,以更有效地估计目标的DOA。在得到DOA估计后,提出了一种多目标定位方法。仿真结果表明,所提出的NC-ANM方法在估计DOA方面优于其他方法,且计算复杂度较低,能够在红外卫星辅助系统中实现精确定位。
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