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DMCE-FrPSD-Based Parameter Estimation Method for Bistatic MIMO Radar Under Alpha-Stable Distributed Noise

CIRCUITS SYSTEMS AND SIGNAL PROCESSING(2023)

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Abstract
Parameter estimation is an essential step for various MIMO radar applications and attracts the attention of many scholars. However, conventional methods typically model moving objects with a constant Doppler frequency shift under Gaussian distributed noise, which may fail in a real radar electromagnetic environment. To make up for the lack of research in this field, a multi-parameter estimation scheme for bistatic MIMO radar in the presence of time-varying Doppler frequency and impulsive noise is proposed. First, a novel operator which combines the deviation from the median-based correntropy (DMCE) and fractional power spectral density (FrPSD), termed DMCE-FrPSD, is defined, and boundedness proof is given to ensure the effectiveness of the proposed methods. Afterwards, Doppler parameters are estimated by peak searching of the DMCE-FrPSD spectrogram. Furthermore, two algorithms based on DMCE-FrPSD are proposed to estimate direction-of-arrival and direction-of-departure. Compared with the existing algorithms, the proposed scheme can estimate multiple parameters with higher accuracy and lower error even under intense impulsive noise. Comprehensive Monte Carlo simulations are carried out to verify the proposed scheme’s superiority under various impulsive noise conditions.
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Key words
Bistatic MIMO radar,Alpha-stable distributed noise,Angle estimation,Doppler parameter estimation,Correntropy,Fractional power spectral density
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