基于OFDM信号的无网格联合时延多普勒估计:一种多电平汉克尔矩阵方法

Ziyu Zhou, Wei Dai
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引用次数: 0

摘要

研究了正交频分复用(OFDM)信号探测时时延、到达方向和多普勒的联合估计问题。采用无网格方法,上述三个参数驻留在连续空间而不是离散网格上。采用低秩多电平汉克尔矩阵捕获后向散射信号的底层结构。提出了一种用于去噪和参数估计的凸优化方法——汉克尔核范数最小化(HNNM),并采用多钳子交替方向法(ADMM)求解。仿真结果表明,HNNM对噪声具有较强的鲁棒性,并且可以超越原子范数最小化方法所要求的最小分离界限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gridless Joint Delay-DoA-Doppler Estimation Using OFDM Signals: A Multilevel Hankel Matrix Approach
This paper investigates the problem of joint es-timation of delay, direction of arrival (DoA), and Doppler when an orthogonal frequency-division multiplexing (OFDM) signal is used for probing. A gridless approach is taken where the above three parameters live on a continuous space rather than a discrete grid. A low-rank multilevel Hankel matrix is used to capture the underlying structure of the back-scattered signals. A convex optimization, termed as Hankel nuclear norm minimization (HNNM), is developed for denoising and parameter estimation, and solved by alternating direction method of multi-pliers (ADMM). Simulations demonstrate that HNNM is robust to noise, and can go beyond the minimum separation bound required by another gridless method atomic norm minimization.
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