计算机科学 ›› 2026, Vol. 53 ›› Issue (6A): 250600169-8.doi: 10.11896/jsjkx.250600169
单程程1, 李未亭1, 梅春1, 赵辉2, 钱伟行2, 曾庆化3
SHAN Chengcheng1, LI Weiting1, MEI Chun1, ZHAO Hui2, QIAN Weixing2, ZENG Qinghua3
摘要: 针对动态场景下非同步图像拼接时效率低下与动态目标失真的问题,提出了一种基于灰狼优化算法的参数自适应图像拼接方法。该方法将GWO的群体智能搜索机制引入RANSAC框架,将关键点子集映射为“狼群个体”,利用α,β,δ狼的引导搜索机制,使关键点选择具有“趋优性”,在非同步状态下保证动态目标的完整性和连续性。此外,为提高算法在不同场景下的鲁棒性和处理效率,引入了两阶段参数自适应机制,包括低分辨率预计算和动态终止条件,实现了对误差容限、迭代次数等核心参数的自动化调整。在StabStitch-D数据集上的实验表明:在相同迭代条件下,GWO-RANSAC较传统RANSAC内点匹配率提升4.91%,PSNR值提升11.4%(从32.5dB提升至36.2dB),SSIM值提升5.1%(从0.881提升至0.926),同时能够减少拼接图像中的黑边与错位现象,并且在复杂场景下也能保证动态目标物体的完整性和连续性。理论分析表明,该方法在资源受限环境和动态非同步场景中具有显著优势,与深度学习方法形成有效互补。
中图分类号:
| [1] ANAND V,GUPTA S,KOUNDAL D,et al.Fusion of U-net and CNN model for segmentation and classification of skin lesions from dermoscopy images [J].Expert Systems with Applications,2023,213:119230. [2] WANG Y H,ZHOU X.Outlierrecognition and eliminationmethod base on zero-phase difference fitting model[J].Electronic Measurement Technology,2024,47(4):31-35. [3] YU Y F,QIAN J B,YAN D Q,et al.Cross-CNN:An Animation Cross-Frame Sketch Colorization Algorithm Based on Hybrid Model with CNN and Transformer[J].Acta Electronica Sinica,2024,52(7):2491-2502. [4] LIN Z K,HOU G J,WANG G D,et al.Image Deraining Based on Union Attention Mechanism and Multi-stage Feature Extraction[J].Computer Science,2025,52(11):206-212. [5] NIE L,LIN C,LIAO K,et al.Deep rectangling for image stitching:A learning baseline [C]//Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition.2022:5740-5748. [6] LIU Y,WANG X,SUN L,et al.Underwater image stitchingmethod based on optimal seam and multi-resolution fusion algorithms [C]//Proceedings of Eighth Symposium on Novel Photoelectronic Detection Technology and Applications.2022.2759-2769. [7] RAHMAN M,LI X,YIN X.DL-RANSAC:An improvedRANSAC with modified sampling strategy based on the likelihood [C]//Proceedings of IEEE 4th International Conference on Image,Vision and Computing.2019:463-468. [8] ZHAO S,ZHANG C T,FAN C L.Deep feature extraction-based sequential image stitching network for deep-sea environments[J].Electronic measurementtechnology,2025,48(3):180-187. [9] JIN S,GE D Y,YAO X F.Image Mosaic Based on RANSACwith Matching Point Increasing[J].Science Technology and Engineering,2025,25(6):2435-2441. [10] LIU J,BU F.Improved RANSAC features image-matchingmethod based on SURF [J].The Journal of Engineering,2019,2019(23):9118-9122. [11] HAN C Y,SU S J,SHI W B,et al.Indoor Positioning in Dynamic Environment Based on PSO-OS-ELM[J].Journal of Data Acquisition and Processing,2022,37(6):1345-1352. [12] KANG Y,WANG H N,TAO L,et al.Hybrid Improved FlowerPollination Algorithm and Gray Wolf Algorithm for Feature Selection[J].Computer Science,2022,49(S1):125-132. [13] CAO G G,ZHU X Y,CHEN Y,et al.Medical Image Registration Based on Improved Brain Storm Optimization Algorithm[J].Journal of Data Acquisition and Processing,2020,35(4):730-738. [14] POŁAP D,WOĆNIAK M.Polar bear optimization algorithm:Meta-heuristic with fast population movement and dynamic birth and death mechanism [J].Symmetry,2017,9(10):203. [15] NARUEI I,KEYNIA F.Wild horse optimizer:A new meta-heuristic algorithm for solving engineering optimization problems [J].Engineering with Computers,2022,38(Suppl 4):3025-3056. [16] WANG J X,HU R Z,GUAN Y,et al.Vibration prediction of hydropower unit based on RFOA-GRNN[J].Journal of Vibration and Shock,2021,40(21):120-126. [17] CHEN J,LI H.UDis:Unsupervised discovery for image stitching[C]//CVPR.2021:5140-5149. [18] SUN J,SHEN Z,WANG Y,et al.LoFTR:Detector-free local feature matching with transformers[C]//CVPR.2021:8922-8931. [19] ROSINOL A,ABATE M,CHANG Y,et al.Kimera:an open-source library for real-time metric-semantic localization and mapping[C]//ICRA.2020:1689-1696. |
|
||