A Fast Inverse Synthetic Aperture Radar Imaging Scheme Combining GPU-Accelerated Shooting and Bouncing Ray and Back Projection Algorithm under Wide Bandwidths and Angles

Author:

Chen Jiongming1,Yang Pengju12ORCID,Zhang Rong1,Wu Rui13

Affiliation:

1. School of Physics and Electronic Information, Yan’an University, Yan’an 716000, China

2. Key Laboratory for Information Science of Electromagnetic Waves (MoE), Fudan University, Shanghai 200433, China

3. Institute for Radio Frequency Technology and Software, Beijing Institute of Technology, Beijing 100081, China

Abstract

Inverse synthetic aperture radar (ISAR) imaging techniques are frequently used in target classification and recognition applications, due to its capability to produce high-resolution images for moving targets. In order to meet the demand of ISAR imaging for electromagnetic calculation with high efficiency and accuracy, a novel accelerated shooting and bouncing ray (SBR) method is presented by combining a Graphics Processing Unit (GPU) and Bounding Volume Hierarchies (BVH) tree structure. To overcome the problem of unfocused images by a Fourier-based ISAR procedure under wide-angle and wide-bandwidth conditions, an efficient parallel back projection (BP) imaging algorithm is developed by utilizing the GPU acceleration technique. The presented GPU-accelerated SBR is validated by comparison with the RL-GO method in commercial software FEKO v2020. For ISAR images, it is clearly indicated that strong scattering centers as well as target profiles can be observed under large observation azimuth angles, Δφ=90°, and wide bandwidths, 3 GHz. It is also indicated that ISAR imaging is heavily sensitive to observation angles. In addition, obvious sidelobes can be observed, due to the phase history of the electromagnetic wave being distorted resulting from multipole scattering. Simulation results confirm the feasibility and efficiency of our scheme by combining GPU-accelerated SBR with the BP algorithm for fast ISAR imaging simulation under wide-angle and wide-bandwidth conditions.

Funder

National Natural Science Foundation of China

Shaanxi Key Research and Development Program

Natural Science Basic Research Plan in Shaanxi Province of China

Graduate Education Innovation Program of Yan’an University

Publisher

MDPI AG

Reference53 articles.

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5. Facet Model of Moving Targets for ISAR Imaging and Radar Back-Scattering Simulation;Grajal;IEEE Trans. Aerosp. Electron. Syst.,2010

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