Refraction point estimation-based backprojection for autofocusing technique in unknown layered scenes using ground penetrating radar data
Backprojection (BP) algorithm is successfully used to focus the layered scenes using ground-penetrating radar data. However, the BP algorithm with the time-consuming refraction point computation is impractical to autofocus in the layered scenes lacking medium information, where iterative focusing fo...
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Published in | Journal of applied remote sensing Vol. 16; no. 3; p. 030501 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Society of Photo-Optical Instrumentation Engineers
01.07.2022
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Abstract | Backprojection (BP) algorithm is successfully used to focus the layered scenes using ground-penetrating radar data. However, the BP algorithm with the time-consuming refraction point computation is impractical to autofocus in the layered scenes lacking medium information, where iterative focusing for estimating information continuously accumulates the calculation time of refraction points. Therefore, we propose a refraction point estimation (RPE)-based BP algorithm for autofocusing technique in unknown layered scenes. Our RPE algorithm, including two steps, directly expresses the refraction point. The first step coarsely estimates an initial position using an adjustment factor. Subsequently, the second step precisely converts the quartic equation of the refraction point into a linear form subject to the coarse estimation. Following this, we propose an RPE-based BP autofocusing technique to efficiently complete information estimation and refocusing. Compared with the existing algorithms, the proposed RPE algorithm directly estimates the refraction point and avoids iteration. The results indicate that the RPE-based BP algorithm has significant advantages in efficiency and accuracy, prompting the practical application of the BP autofocusing in unknown layered scenes. |
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AbstractList | Backprojection (BP) algorithm is successfully used to focus the layered scenes using ground-penetrating radar data. However, the BP algorithm with the time-consuming refraction point computation is impractical to autofocus in the layered scenes lacking medium information, where iterative focusing for estimating information continuously accumulates the calculation time of refraction points. Therefore, we propose a refraction point estimation (RPE)-based BP algorithm for autofocusing technique in unknown layered scenes. Our RPE algorithm, including two steps, directly expresses the refraction point. The first step coarsely estimates an initial position using an adjustment factor. Subsequently, the second step precisely converts the quartic equation of the refraction point into a linear form subject to the coarse estimation. Following this, we propose an RPE-based BP autofocusing technique to efficiently complete information estimation and refocusing. Compared with the existing algorithms, the proposed RPE algorithm directly estimates the refraction point and avoids iteration. The results indicate that the RPE-based BP algorithm has significant advantages in efficiency and accuracy, prompting the practical application of the BP autofocusing in unknown layered scenes. |
Author | Su, Fulin Xu, Zihan Xu, Guodong |
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Cites_doi | 10.1109/ICGPR.2010.5550199 10.1016/j.jappgeo.2021.104422 10.1109/JSTARS.2014.2321710 10.1007/s00603-016-0943-y 10.3390/rs10040530 10.1016/j.autcon.2020.103435 10.1109/TGRS.2019.2904608 10.1109/TGRS.2017.2762365 10.1016/j.measurement.2020.107662 10.1117/12.186717 10.1190/segj2021-046.1 10.1109/LGRS.2021.3090431 10.1109/LGRS.2011.2165523 |
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Title | Refraction point estimation-based backprojection for autofocusing technique in unknown layered scenes using ground penetrating radar data |
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