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第5期 陈秋凤,等:局部自适应输入控制的随机游走抠图 ·1015· 行缓慢,对边界模糊图像的处理效果不够理想, [12]CHEN Qifeng,LI Dingzeyu,TANG C K.KNN 如何进一步提高算法的快速性和复杂图像的处理 matting[J].IEEE transactions on pattern analysis and ma- 能力仍将是未来努力的方向。 chine intelligence,2013,35(9):2175-2188. 参考文献: [13]TSENG C Y,WANG S J.Learning-based hierarchical graph for unsupervised matting and foreground estima- [1]YAO Guilin,ZHAO Zhijie,LIU Shaohui.A comprehens- tion[J].IEEE transactions on image processing,2014, ive survey on sampling-based image matting[J].Computer 23(12):49414953 graphics forum,2017,36(8):613-628. 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[24]ACHANTA R,SHAJI A,SMITH K,et al.SLIC super-行缓慢,对边界模糊图像的处理效果不够理想, 如何进一步提高算法的快速性和复杂图像的处理 能力仍将是未来努力的方向。 参考文献: YAO Guilin, ZHAO Zhijie, LIU Shaohui. A comprehens￾ive survey on sampling-based image matting[J]. Computer graphics forum, 2017, 36(8): 613–628. [1] ZHU Qingsong, SHAO Ling, LI Xuelong, et al. Targeting accurate object extraction from an image: a comprehens￾ive study of natural image matting[J]. IEEE transactions on neural networks and learning systems, 2015, 26(2): 185–207. [2] KARACAN L, ERDEM A, ERDEM E. Alpha matting with KL-divergence-based sparse sampling[J]. IEEE trans￾actions on image processing, 2017, 26(9): 4523–4536. [3] XU Ning, PRICE B, COHEN S, et al. Deep image matting[C]//Proceedings of 2017 IEEE Conference on Computer Vision and Pattern Recognition (CVPR). Hon￾olulu, USA, 2017: 311–320. [4] SHI Yongfang, AU O C, PANG Jiahao, et al. Color clus￾tering matting[C]//Proceedings of 2013 IEEE International Conference on Multimedia and Expo. San Jose, USA, 2013: 1–6. 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Learning based digital matting[C]//Proceedings of the 12th International Conference on Computer Vision (ICCV). Kyoto, Japan, 2009: 889–896. [11] CHEN Qifeng, LI Dingzeyu, TANG C K. KNN matting[J]. IEEE transactions on pattern analysis and ma￾chine intelligence, 2013, 35(9): 2175–2188. [12] TSENG C Y, WANG S J. Learning-based hierarchical graph for unsupervised matting and foreground estima￾tion[J]. IEEE transactions on image processing, 2014, 23(12): 4941–4953. [13] GONG Minglun, QIAN Yiming, CHENG Li. Integrated foreground segmentation and boundary matting for live videos[J]. IEEE transactions on image processing, 2015, 24(4): 1356–1370. [14] LEE S Y, YOON J C, LEE I K. Temporally coherent video matting[J]. Graphical models, 2010, 72(3): 25–33. [15] SHAHRIAN E, PRICE B, COHEN S, et al. Temporally coherent and spatially accurate video matting[J]. Com￾puter graphics forum, 2014, 33(2): 381–390. [16] LI Dingzeyu, CHEN Qifeng, TANG C K. Motion-aware KNN Laplacian for video matting[C]//Proceedings of 2013 IEEE International Conference on Computer Vision (ICCV). Sydney, Australia, 2013: 3599-3606. [17] SINDEEV M, KONUSHIN A, ROTHER C. Alpha-flow for video matting[C]//Proceedings of the 11th Asian Con￾ference on Computer Vision. Daejeon, Korea, 2012: 438–452. [18] CHO D, KIM S, TAI Y W, et al. Automatic trimap gener￾ation and consistent matting for light-field images[J]. IEEE transactions on pattern analysis and machine intelli￾gence, 2017, 39(8): 1504–1517. [19] CHO H W, CHO Y R, SONG W J, et al. Image matting for automatic target recognition[J]. IEEE transactions on aerospace and electronic systems, 2017, 53(5): 2233– 2250. [20] GRADY L. Random walks for image segmentation[J]. IEEE transactions on pattern analysis and machine intelli￾gence, 2006, 28(10): 1768–1783. [21] WU Xiaoming, LI Zhenguo, SO A M C, et al. Learning with partially absorbing random walks[C]//Proceedings of the 25th International Conference on Neural Information Processing Systems (NIPS). Lake Tahoe, USA, 2012: 3077–3085. [22] SINGARAJU D, ROTHER C, RHEMANN C. New ap￾pearance models for natural image matting[C]//Proceed￾ings of 2009 IEEE Conference on Computer Vision and Pattern Recognition (CVPR). Miami Beach, USA, 2009: 659-666. [23] [24] ACHANTA R, SHAJI A, SMITH K, et al. SLIC super- 第 5 期 陈秋凤,等:局部自适应输入控制的随机游走抠图 ·1015·
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