An Autofocus Method for Long Synthetic Time and Large Swath Synthetic Aperture Radar Imaging Under Multiple Non-Ideal Factors
Synthetic aperture radar (SAR) is an all-weather and all-day imaging technique for Earth observation. Achieving efficient observation, high resolution, and wide swath coverage have remained critical development goals in SAR technology, which inherently require extended synthetic aperture time. Howev...
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MDPI AG
2025-06-01
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| author | Kaiwen Zhu Zhen Wang Zehua Dong Han Li Linghao Li |
| author_facet | Kaiwen Zhu Zhen Wang Zehua Dong Han Li Linghao Li |
| author_sort | Kaiwen Zhu |
| collection | DOAJ |
| description | Synthetic aperture radar (SAR) is an all-weather and all-day imaging technique for Earth observation. Achieving efficient observation, high resolution, and wide swath coverage have remained critical development goals in SAR technology, which inherently require extended synthetic aperture time. However, various non-ideal factors, including atmospheric disturbances, orbital perturbations, and antenna vibrations. degrade imaging performance, causing defocusing and ghost targets. Furthermore, the long synthetic time and large imaging swath further enlarge the temporal and spatial variability of these factors and seriously degrade the imaging effect. These inherent challenges make autofocusing indispensable for SAR imaging with a long synthetic time and large swath. In this paper, a novel autofocus method specifically designed to address these non-ideal factors is proposed for SAR imaging with a long synthetic time and large swath. The innovation of the method mainly consists of two parts. The first is the autofocus for multiple non-ideal factors, which is accomplished by an improved phase gradient autofocus (PGA) equipped with amplitude error estimation and discrete windowing. PGA with amplitude error estimation can solve the problem of defocus, and discrete windowing can focus the energy of paired echoes. The second is an error fusion and interpolation method for a long synthetic time and large swath. This method fuses errors among sub-apertures in the long synthetic time and can fulfill autofocus for blocks where strong scatterers are not sufficient in the large swath. The proposed method can effectively achieve SAR focusing with a long synthetic time and large swath, considering spatial and temporal variant non-ideal factors. Point target simulations and distributed target simulations based on real scenarios are conducted to validate the proposed method. |
| format | Article |
| id | doaj-art-a131cfcb9bc242f4b1e792f749e638cb |
| institution | OA Journals |
| issn | 2072-4292 |
| language | English |
| publishDate | 2025-06-01 |
| publisher | MDPI AG |
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| spelling | doaj-art-a131cfcb9bc242f4b1e792f749e638cb2025-08-20T02:23:00ZengMDPI AGRemote Sensing2072-42922025-06-011711194610.3390/rs17111946An Autofocus Method for Long Synthetic Time and Large Swath Synthetic Aperture Radar Imaging Under Multiple Non-Ideal FactorsKaiwen Zhu0Zhen Wang1Zehua Dong2Han Li3Linghao Li4Radar Technology Research Institute, School of Information and Electronics, Beijing Institute of Technology, Beijing 100081, ChinaRadar Technology Research Institute, School of Information and Electronics, Beijing Institute of Technology, Beijing 100081, ChinaRadar Technology Research Institute, School of Information and Electronics, Beijing Institute of Technology, Beijing 100081, ChinaRadar Technology Research Institute, School of Information and Electronics, Beijing Institute of Technology, Beijing 100081, ChinaRadar Technology Research Institute, School of Information and Electronics, Beijing Institute of Technology, Beijing 100081, ChinaSynthetic aperture radar (SAR) is an all-weather and all-day imaging technique for Earth observation. Achieving efficient observation, high resolution, and wide swath coverage have remained critical development goals in SAR technology, which inherently require extended synthetic aperture time. However, various non-ideal factors, including atmospheric disturbances, orbital perturbations, and antenna vibrations. degrade imaging performance, causing defocusing and ghost targets. Furthermore, the long synthetic time and large imaging swath further enlarge the temporal and spatial variability of these factors and seriously degrade the imaging effect. These inherent challenges make autofocusing indispensable for SAR imaging with a long synthetic time and large swath. In this paper, a novel autofocus method specifically designed to address these non-ideal factors is proposed for SAR imaging with a long synthetic time and large swath. The innovation of the method mainly consists of two parts. The first is the autofocus for multiple non-ideal factors, which is accomplished by an improved phase gradient autofocus (PGA) equipped with amplitude error estimation and discrete windowing. PGA with amplitude error estimation can solve the problem of defocus, and discrete windowing can focus the energy of paired echoes. The second is an error fusion and interpolation method for a long synthetic time and large swath. This method fuses errors among sub-apertures in the long synthetic time and can fulfill autofocus for blocks where strong scatterers are not sufficient in the large swath. The proposed method can effectively achieve SAR focusing with a long synthetic time and large swath, considering spatial and temporal variant non-ideal factors. Point target simulations and distributed target simulations based on real scenarios are conducted to validate the proposed method.https://www.mdpi.com/2072-4292/17/11/1946SAR autofocusimproved phase gradient autofocus (PGA)non-ideal factorslong synthetic timelarge swath |
| spellingShingle | Kaiwen Zhu Zhen Wang Zehua Dong Han Li Linghao Li An Autofocus Method for Long Synthetic Time and Large Swath Synthetic Aperture Radar Imaging Under Multiple Non-Ideal Factors Remote Sensing SAR autofocus improved phase gradient autofocus (PGA) non-ideal factors long synthetic time large swath |
| title | An Autofocus Method for Long Synthetic Time and Large Swath Synthetic Aperture Radar Imaging Under Multiple Non-Ideal Factors |
| title_full | An Autofocus Method for Long Synthetic Time and Large Swath Synthetic Aperture Radar Imaging Under Multiple Non-Ideal Factors |
| title_fullStr | An Autofocus Method for Long Synthetic Time and Large Swath Synthetic Aperture Radar Imaging Under Multiple Non-Ideal Factors |
| title_full_unstemmed | An Autofocus Method for Long Synthetic Time and Large Swath Synthetic Aperture Radar Imaging Under Multiple Non-Ideal Factors |
| title_short | An Autofocus Method for Long Synthetic Time and Large Swath Synthetic Aperture Radar Imaging Under Multiple Non-Ideal Factors |
| title_sort | autofocus method for long synthetic time and large swath synthetic aperture radar imaging under multiple non ideal factors |
| topic | SAR autofocus improved phase gradient autofocus (PGA) non-ideal factors long synthetic time large swath |
| url | https://www.mdpi.com/2072-4292/17/11/1946 |
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