1 |
尹宏鹏,陈波,柴毅,等 .基于视觉的目标检测与跟踪综述[J].自动化学报,2016,42(10):1466-1489.
|
|
YIN Hongpeng, CHEN Bo, CHAI Yi,et al .Vision-based object detection and tracking:a review [J].Acta Automatica Sinica,2016,42(10):1466-1489.
|
2 |
郑运平,李睿君 .二叉树模型在目标跟踪中的应用[J].华南理工大学学报(自然科学版),2020,48(1):42-50.
|
|
ZHENG Yunping, LI Ruijun .Application of binary tree model in object tracking [J].Journal of South China University of Technology (Natural Science Edition),2020,48(1):42-50.
|
3 |
孟琭,杨旭 .目标跟踪算法综述 [J].自动化学报,2019,45(7):1244-1260.
|
|
MENG Lu, YANG Xu .A survey of object tracking algorithms [J].Acta Automatica Sinica,2019,45(7):1244-1260.
|
4 |
BOLME D S, BEVERIDGE J R, DRAPER B A,et al .Visual object tracking using adaptive correlation filters [C]∥ Proceedings of 2010 IEEE Conference on Computer Vision and Pattern Recognition.San Francisco:IEEE,2010:2544-2550.
|
5 |
HENRIQUES J F, CASEIRO R, MARTINS P,et al .High-speed tracking with kernelized correlation filters [J].IEEE Transactions on Pattern Analysis and Machine Intelligence,2015,37(3):583-596.
|
6 |
DANELLJAN M, BHAT G, KHAN F S,et al .ECO:efficient convolution operators for tracking [C]∥ Procee-dings of 2017 IEEE Conference on Computer Vision and Pattern Recognition.Honolulu:IEEE,2017:6931-6939.
|
7 |
DANELLJAN M, HAGER G, KHAN F S,et al .Discriminative scale space tracking [J].IEEE Transactions on Pattern Analysis and Machine Intelligence,2017,39(8):1561-1575.
|
8 |
李玺,查宇飞,张天柱,等 .深度学习的目标跟踪算法综述 [J].中国图象图形学报,2019,24(12):2057-2080.
|
|
LI Xi, ZHA Yufei, ZHANG Tianzhu,et al .Survey of visual object tracking algorithms based on deep learning [J].Journal of Image and Graphics,2019,24(12):2057-2080.
|
9 |
BERTINETTO L, VALMADRE J, HENRIQUES J F,et al .Fully-convolutional Siamese networks for object tracking [C]∥ Proceedings of the 14th European Conference on Computer Vision.Amsterdam:Springer,2016:850-865.
|
10 |
LI B, YAN J J, WU W,et al .High performance visual tracking with Siamese region proposal network [C]∥ Proceedings of 2018 IEEE/CVF Conference on Computer Vision and Pattern Recognition.Salt Lake City:IEEE,2018:8971-8980.
|
11 |
LI B, WU W, WANG Q,et al .SiamRPN++:evolution of Siamese visual tracking with very deep networks [C]∥ Proceedings of 2019 IEEE/CVF Conference on Computer Vision and Pattern Recognition.Long Beach:IEEE,2019:4277-4286.
|
12 |
SHEN J, TANG X, DONG X,et al .Visual object tracking by hierarchical attention Siamese network [J].IEEE Transactions on Cybernetics,2020,50(7):3068-3080.
|
13 |
WU Y,LIM J, YANG M H .Object tracking benchmark [J].IEEE Transactions on Pattern Analysis and Machine Intelligence,2015,37(9):1834-1848.
|
14 |
KRISTAN M, LEONARDIS A, MATAS J,et al .The sixth visual object tracking VOT2018 challenge results [C]∥ Proceedings of 2018 European Conference on Computer Vision Workshops.Munich:Springer,2018:3-53
|
15 |
LI P, CHEN B, OUYANG W,et al .GradNet:gradient-guided network for visual object tracking [C]∥ Proceedings of 2019 IEEE/CVF International Conference on Computer Vision.Seoul:IEEE,2019:6161-6170.
|
16 |
VOIGTLAENDER P, LUITEN J, TORR P H,et al .Siam R-CNN:visual tracking by re-detection [C]∥ Proceedings of 2020 IEEE/CVF Conference on Computer Vision and Pattern Recognition.Seattle:IEEE,2020:6577-6587.
|
17 |
DANELLJAN M, BHAT G, KHAN F S,et al .ATOM: accurate tracking by overlap maximization [C]∥ Proceedings of 2019 IEEE/CVF Conference on Computer Vision and Pattern Recognition.Long Beach:IEEE,2019:4655-4664.
|
18 |
XU T Y, FENG Z H, WU X J,et al .Learning adaptive discriminative correlation filters via temporal consistency preserving spatial feature selection for robust visual object tracking [J].IEEE Transactions on Image Processing,2019,28(11):5596-5609.
|
19 |
CHEN Z, ZHONG B, LI G,et al .Siamese box adaptive network for visual tracking [C]∥ Proceedings of 2020 IEEE/CVF Conference on Computer Vision and Pattern Recognition.Seattle:IEEE,2020:6667-6676.
|
20 |
YU Y, XIONG Y, HUANG W,et al .Deformable Siamese attention networks for visual object tracking [C]∥ Proceedings of 2020 IEEE/CVF Conference on Computer Vision and Pattern Recognition.Seattle:IEEE,2020:6727-6736.
|