Laser & Optoelectronics Progress, Volume. 61, Issue 18, 1800004(2024)
Progress in Research and Application of Image Stitching Technology Based on Regional Optimization
[1] Zhang X. Research on the remote target optoelectronic detecting system based on field of view stitching[D], 1-9(2020).
[3] Yang L J, Siqing B L. Research on image splicing technology of airborne photoelectric imaging system[J]. Laser Journal, 40, 59-63(2019).
[4] Zhou Q F. Precise geometric correction and robust mosaic in airborne photoelectric imaging system[D], 5-10(2016).
[5] Sheng M W, Tang S Q, Wan L et al. A survey of two-dimension image mosaic technology[J]. Navigation and Control, 18, 27-34, 96(2019).
[7] Li J. Research on local adaptive panoramic image stitching[D], 1-4(2017).
[23] Gao J H, Yu L, Chin T J et al. Seam-driven image stitching[C], 1-4(2013).
[25] Lin K M, Jiang N J, Cheong L F, Leibe B, Matas J, Sebe N et al. SEAGULL: seam-guided local alignment for parallax-tolerant image stitching[M]. Computer vision-ECCV 2016.Lecture notes in computer science, 9907, 370-385(2016).
[27] Davis J. Mosaics of scenes with moving objects[C], 354-360(2002).
[28] Chon J, Kim H, Lin C S. Seam-line determination for image mosaicking: a technique minimizing the maximum local mismatch and the global cost[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 65, 86-92(2010).
[29] Kerschner M. Seamline detection in colour orthoimage mosaicking by use of twin snakes[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 56, 53-64(2001).
[37] Yuan S G, Yang K, Li X et al. Automatic seamline determination for urban image mosaicking based on road probability map from the D-LinkNet neural network[J]. Sensors, 20, 1832(2020).
[42] Zheng M T, Xiong X D, Zhu J F. Automatic seam-line determination for orthoimage mosaics using edge-tracking based on a DSM[J]. Remote Sensing Letters, 8, 977-986(2017).
[44] Zheng M T, Xiong X D, Zhu J F. A novel orthoimage mosaic method using a weighted a algorithm-implementation and evaluation[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 138, 30-46(2018).
[50] Nie L, Lin C Y, Liao K et al. Learning edge-preserved image stitching from multi-scale deep homography[J]. Neurocomputing, 491, 533-543(2022).
[54] Liu L, Yi X J. Research on hyper-spectral image stitching based on multi-sensor registration[J]. Laser Journal, 41, 123-126(2020).
[56] Liu T, Hu L, Wang Y J et al. Satellite remote sensing image mosaic based on convolutional neural network[J]. Journal of Jilin University (Science Edition), 60, 99-108(2022).
[57] Wang H Y. Research on key technologies for target detection in aerial hyperspectral remote sensing imagery[D], 1-5(2023).
[58] Yi L N, Chen J M, Zhang G F et al. Seamless mosaicking of UAV-based push-broom hyperspectral images for environment monitoring[J]. Remote Sensing, 13, 4720(2021).
[61] Ding R L, Li J, Xie B R et al. Ship target detection method based on infrared remote sensing image[J]. Optics & Optoelectronic Technology, 19, 24-33(2021).
[63] Liu Y Y, He M, Wang Y Y et al. Fast stitching for the farmland aerial panoramic images based on optimized SIFT algorithm[J]. Transactions of the Chinese Society of Agricultural Engineering, 39, 117-125(2023).
[64] Liang J X, Zhang L, Meng Y Y et al. Improved maize plant contour extraction method[J]. Laser & Optoelectronics Progress, 60, 1210004(2023).
[66] Shen Y, Zhu J H, Liu H et al. Rapid target plant image mosaic based on depth and color information from Kinect combining K-means algorithm[J]. Transactions of the Chinese Society of Agricultural Engineering, 34, 134-141(2018).
[67] Zhang R, Yuan B, Yang M et al. Road image mosaic based on deep learning LoFTR algorithm[J]. Computer Systems & Applications, 32, 170-180(2023).
[70] Yu L C, He S H, Jiang S Q et al. Automatic matching, stitching and fusion method of concrete bridge crack images[J]. Journal of Chang'an University (Natural Science Edition), 42, 33-41(2022).
[72] Yang G J, Qi Y H, Shi X M. Review of bridge crack detection based on digital image technology[J]. Journal of Jilin University (Engineering and Technology Edition), 54, 313-332(2024).
[73] Xia Z G, Hua D Z, Zhang X et al. Research on stomach image stitching method based on improved SIFT algorithm[J]. Process Automation Instrumentation, 43, 56-61(2022).
[75] Xu Y, Liu H Y, Zhuang Q J. Research on large-field microscopic images based on the best stitching path[J]. Journal of East China Normal University (Natural Science), 81-87(2021).
[77] Huang J G, Yu Z M, Peng G J et al. Microscopic image stitching algorithm based on stage motion information[J]. Laser & Optoelectronics Progress, 61, 0837012(2024).
[78] Li S L, Dai S X, Hu Z W et al. Visual measurement method for transparent elements based on sub-pixel image mosaics[J]. Laser & Optoelectronics Progress, 60, 0615004(2023).
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Weidong Pan, Anhu Li, Xingsheng Liu. Progress in Research and Application of Image Stitching Technology Based on Regional Optimization[J]. Laser & Optoelectronics Progress, 2024, 61(18): 1800004
Category: Reviews
Received: Jun. 3, 2024
Accepted: Jul. 29, 2024
Published Online: Sep. 14, 2024
The Author Email: Anhu Li (lah@tongji.edu.cn)
CSTR:32186.14.LOP241417