An Improved ORB Algorithm for the Unmanned Aerial Vehicle (UAV) Image Stitching Task

被引:0
|
作者
Yan, Qicheng [1 ]
Qiu, Hao [1 ]
机构
[1] Hohai Univ, Sch Comp & Informat, Nanjing 211100, Peoples R China
关键词
UAV images; image stitching; ORB; image pyramid light flow method; image chunking;
D O I
10.1117/12.2644208
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Based on the image chunking processing theory, this paper proposes an improved ORB-based UAV image stitching algorithm that takes the pyramidal optical flow characteristics into consideration to overcome the weaknesses of the traditional algorithm (proneness to feature point aggregation, uneven distribution, and low feature matching accuracy). Firstly, the ORB algorithm is used to detect the feature points using the image chunking method of constructing moving masks. Subsequently, the non-maximum suppression method is used to reject the feature points aggregated in each mask, and the Hamming distance is used for feature matching after traversal. Following the step, the pyramid optical flow method is used to correct the motion displacement vector of the feature points and reject the mis-matched pairs after matching. Finally, the RANSAC algorithm is used to filter the redundant pairs to further improve the accuracy, and then the image is stitched together using the optimal stitching seam strategy and the fade-in-and-fade-out fusion algorithm. Overall, the aforementioned procedure increased the alignment rate to approximately 97% in the alignment stage, achieving a better alignment accuracy and a more accurate stitching effect.
引用
收藏
页数:7
相关论文
共 50 条
  • [41] Polygamy Based Genetic Algorithm for Unmanned Aerial Vehicle (UAV) Power Optimization: A proposal
    Aibinu, A. M.
    Salau, H. Bello
    Akachukwu, C. M.
    Nwohu, M. N.
    PROCEEDINGS OF THE 2014 11TH INTERNATIONAL CONFERENCE ON ELECTRONICS, COMPUTER AND COMPUTATION (ICECCO'14), 2014,
  • [42] Fast and Robust Photomapping with an Unmanned Aerial Vehicle (UAV)
    Buelow, Heiko
    Birk, Andreas
    2009 IEEE-RSJ INTERNATIONAL CONFERENCE ON INTELLIGENT ROBOTS AND SYSTEMS, 2009, : 3368 - 3373
  • [43] Wind tunnel test of an unmanned aerial vehicle (UAV)
    Chung Jindeog
    Lee Jangyeon
    Sung Bongzoo
    Koo Samok
    KSME International Journal, 2003, 17 : 776 - 783
  • [44] Unmanned Aerial Vehicle (UAV) in Future Communication System
    New, Wee Kiat
    Leow, Chee Yen
    2021 26TH IEEE ASIA-PACIFIC CONFERENCE ON COMMUNICATIONS {APCC), 2021, : 217 - 222
  • [45] Unmanned Aerial Vehicle (UAV) Charging from Powerlines
    Lu, Maxim
    James, Alex
    Bagheri, Mehdi
    2017 IEEE PES ASIA-PACIFIC POWER AND ENERGY ENGINEERING CONFERENCE (APPEEC), 2017,
  • [46] Unmanned aerial vehicle (UAV) system for photogrammetric application
    Cui, Hongxia
    Lin, Zongjian
    2007 INTERNATIONAL SYMPOSIUM ON COMPUTER SCIENCE & TECHNOLOGY, PROCEEDINGS, 2007, : 396 - 399
  • [47] Wind tunnel test of an unmanned aerial vehicle (UAV)
    Jindeog, C
    Jangyeon, L
    Bongzoo, S
    Samok, K
    KSME INTERNATIONAL JOURNAL, 2003, 17 (05): : 776 - 783
  • [48] Research on Stitching Algorithm Based on UAV Based on Aerial Photography
    Han Jianfeng
    Zhang Yan
    LASER & OPTOELECTRONICS PROGRESS, 2020, 57 (20)
  • [49] Fast automatic stitching for images of unmanned aerial vehicle in emergency response
    Xie, D. (dhxie@irsa.ac.cn), 1600, Institute of Computing Technology (25):
  • [50] Research on the Corn Stover Image Segmentation Method via an Unmanned Aerial Vehicle (UAV) and Improved U-Net Network
    Xu, Xiuying
    Gao, Yingying
    Fu, Changhao
    Qiu, Jinkai
    Zhang, Wei
    AGRICULTURE-BASEL, 2024, 14 (02):