代表论文 | [1] Yingpin Chen, Zhenming Peng*, Zhuyuan Cheng, and Lin Tian. Seismic signal time-frequency analysis based on multi-directional window using greedy strategy[J]. Journal of Applied Geophysics, 2017, 143: 116-128 (SCI/EI, 中科院二区,IF=2.121) [2] 陈颖频, 彭真明*, 李美惠, 等. 基于交叠组稀疏广义全变分的地震信号随机噪声衰减[J]. 石油地球物理勘探, 2019, 54(1): 24-35, 44 (EI核心库收录) [3] Yingpin Chen, Zhenming Peng*, G. Ali, J. Yan, S. Li. Seismic signal sparse time-frequency representation by Lp-quasinorm constraint[J]. Digital Signal Processing, 2019, 87: 43-59. (SCI, 中科院二区, IF=3.381) [4] Yingpin Chen, Zhenming Peng *, Meihui Li, Fei Yu. Fan Lin. Seismic signal denoising using total generalized variation with overlapping group sparsity in the accelerated ADMM framework[J]. Journal of Geophysics and Engineering, 2019, 16(1): 30-51. (SCI, 中科院四区, IF=2.087) [5] Linna Wu, Yingpin Chen, Jiaquan Jin, et al. Four-directional fractional order total variation regularization for image denoising[J]. Journal of Electronic Imaging, 2017, 26(5), 053003. (SCI, 中科院四区, IF= 0.884, 共同一作者) [6] Yingpin Chen, Zhenming Peng, et al. The optimal fractional Gabor transform based on the adaptive window function and its application[J]. Applied Geophysics, 2013, 10(3): 305-313. (SCI, 中科院四区, IF=0.954) [7] Fan Lin, Yingpin Chen*, et al. Image deblurring under impulse noise via total generalized variation and non-convex shrinkage[J]. Algorithms, 2019, 12(10): 221. (EI, 通讯作者) [8] Lingzhi Wang, Yingpin Chen*. Improved sequential vertex colouring algorithm for the TDMA dynamic time slot allocation protocol[J]. Engineering Letter, 2018, 26(3): 348-355. (EI, 通讯作者) [9] Lingzhi Wang, Yingpin Chen*, Fan Lin, et al. Impulse noise denoising using total variation with overlapping group sparsity and Lp pseudo-norm shrinkage[J]. Applied Sciences, 2018, 8(11), 2317. (SCI, 中科院三区, IF=2.217, 通讯作者) [10] Fan Lin, Yingpin Chen, et al. An efficient image reconstruction framework using total variation regularization with Lp-quasinorm and group gradient sparsity[J]. Information, 2019, 10(3): 115.(EI) [11] Hao Wu, Yingpin Chen, S. Li, et al. Acoustic impedance inversion using Gaussian metropolis–hastings sampling with data driving[J]. Energies, 2019, 12(14): 2744. (SCI, 中科院三区, IF=2.707) [12] Yuqing Zhao, D. Ji, Yingpin Chen, et al. A new in-line X-ray phase-contrast computed tomography reconstruction algorithm based on adaptive-weighted anisotropic TpV regularization for insufficient data[J]. Journal of Synchrotron Radiation, 2019, 26(4): 1330-1342. (SCI, 中科院二区, IF=3.232) [13] Xingguo Liu, Yingpin Chen, Z. Peng*, et al. Infrared image super-resolution reconstruction based on quaternion fractional order total variation with Lp quasinorm[J]. Applied Sciences, 2018, 8(10): 1864. (SCI, 中科院三区, IF= 1.689) [14] Meihui Li, Z. Peng*, Yingpin Chen, et al. A novel reverse sparse model utilizing the spatio-temporal relationship of target templates for object tracking[J]. Neurocomputing, 2019, 323: 319-334. (SCI, 中科院二区, IF=4.438) [15] Meihui Li, L. Peng, Yingpin Chen, et al. Mask sparse representation based on semantic features thermal infrared Object Tracking[J]. Remote Sensing, 2019, 11(17), 1967. (SCI,中科院二区,IF=4.118) [16] Shu Li, Y. He, Yingpin Chen, et al. Fast multi-trace impedance inversion using anisotropic total p-variation regularization in the frequency domain[J]. Journal of Geophysics and Engineering, 2018, 15(5): 2171-2182. (SCI, 中科院四区, IF=1.624) [17] Yan Du, Yingpin Chen, G. Meng, et al. Fault severity monitoring of rolling bearings based on texture feature extraction of sparse time–frequency images[J]. Applied Sciences, 2018, 8(9): 1538. (SCI, 中科院三区, IF=2.217) [18] 林凡, 程祝媛, 陈颖频, 陈育群, 喻飞. 基于交叠组合稀疏全变分的图像去噪方法[J]. 科学工程与技术, 2018,18(18): 67-73. (北大中文核心期刊) [19] 许基隆,陈颖频*. 一种基于全变分技术和Lp伪范数的椒盐噪声去除方法[J]. 数据采集与处理, 2020, 35(1): 89-99. (CSCD核心,北大中文核心期刊) [20] 杨晶晶, 吴辉, 陈颖频*. 一种基于Lp收缩算子的改进全变分去噪方法[J]. 计算机技术与发展, 2020, 30 (4): 20-25+88. (中文科技核心) [21] 彭真明, 陈颖频, 蒲恬, 等. 基于稀疏表示及正则约束的图像去噪方法综述[J]. 数据采集与处理, 2018, 33(1): 1-11. (北大中文核心期刊) [22] Xingguo Liu, Yingpin Chen, et al. Total variation with overlapping group sparsity and Lp quasinorm for infrared image deblurring under salt-and-pepper noise[J]. Journal of Electronic Imaging, 2019, 28(4): 043031. (SCI, 中科院四区, IF= 0.924) [23] Hao Wu, S. Li, Yingpin Chen, et al. Seismic impedance inversion using second-order overlapping group sparsity with A-ADMM[J]. Journal of Geophysics and Engineering, 2020, 17(1): 97-116. (SCI, 中科院四区, IF=2.087) [24] Xingguo Liu, Yingpin Chen, Zhenming Peng, et al. Infrared image super-resolution reconstruction based on quaternion and high-order overlapping group sparse total variation[J]. Sensors, 2019, 19, 5139. (SCI, 中科院三区, IF=3.275) [25] 杨晶晶, 陈颖频*. 基于二阶全变分与Lp伪范数的图像解模糊研究[J]. 微电子学与计算机, 2020, 37(09):18-23. (北大中文核心期刊) [26] 陈颖频, 柯素玲, 黄慧滢, 吴日盛, 王灵芝. 基于广义全变分正则项的图像填补技术[J]. 计算机与现代化, 2020. (07): 117-120(中文科技核心) [27] 陈育群, 陈颖频. 一种快速交叠组合稀疏全变分图像去噪方法[J]. yl23455永利集团学报(自然科学版), 2018, 32(3): 46-51 [28] 陈颖频, 林凡, 喻飞, 王灵芝, 徐国荣, 陈育群. 层次化实验教学在《数字图像处理》教学中的初探[J]. yl23455永利集团学报(自然版), 2018, 4:92-97 [29] 陈颖频. 基于递推数列的涂色问题求解[J]. 福建中学数学, 2021, 1, 37-38 [30] Hao Wu, Yanming He, Yingpin Chen, Shu Li, & Zhenming Peng. Seismic acoustic impedance inversion using mixed second-order fractional ATpV regularization[J]. IEEE Access, 2020, 8(1): 3442-3452. (SCI, 中科院二区, IF= 3.745) [31] 林凡, 陈颖频, 陈育群, 等. 基于四方向全变分的快速图像解模糊方法[J]. 长春师范大学学报, 2019 (4): 6. [32] 陈育群, 陈颖频, 林凡, 等. 一种快速的四方向全变分图像去噪方法[J]. yl23455永利集团学报 (自然科学版), 2018 (3): 26-32. [33] Jingjing Yang, Yingpin Chen*, Zhifeng Chen. Infrared image deblurring via high-order total variation and Lp-pseudonorm shrinkage[J]. Applied Sciences, 2020, 10(4): 2553. (SCI, 中科院三区, IF=2.217, 通讯作者) [34] Yingpin Chen, Yanming He, Shu Li, Hao Wu, Zhenming Peng*. Seismic spectrum decomposition based on sparse time-frequency analysis[J]. Journal of Applied Geophysics, 2020, 177, 104031.(SCI/EI, 中科院二区,IF=2.121) [35] 肖伟煌,陈颖频*. 重叠组稀疏广义全变分图像去模糊[J]. 探测与控制学报, 2020, 42(6): 86-94(北大中文核心期刊) [36] 陈育群, 陈颖频*, 林凡, 王灵芝. 基于高阶交叠组稀疏正则项的图像恢复方法研究[J]. 科学技术与工程, 2020, 20 (33): 13747-13756 (北大中文核心期刊) [37] 程祝媛, 倪婉贞, 陈颖频*. 基于Lp伪范数和高阶OGS全变分的椒盐噪声去除[J]. 图学学报, 2021, 42 (1): 16-23 (北大中文核心期刊) [38] 陈颖频, 喻飞, 王灵芝, 林凡, 陈育群. “数字图像处理”课程教学改革[J]. 电气电子教学学报, 2021,43 (5): 82-87 [39] 虞虹玲,陈颖频*, 许艳萍, 林晨, 蒋旻佚, 罗崇淼, 林耀进. 局部模板更新逆向联合稀疏表示目标跟踪算法[J]. 图学学报, 2022, 43(1): 60-69 (北大中文核心期刊) [40] 陈颖频, 孔俊雅, 余超群, 林晨, 蒋旻佚, 罗崇淼, 虞虹玲. 基于低秩约束的逆向联合稀疏跟踪算法[J]. 探测与控制学报, 2022 , 44(6): 23-33(北大中文核心期刊) [41] 林叶宾, 陈颖频*. 基于分类事件和分步事件计数原理的涂色问题求解[J]. 理科爱好者(教育教学), 2021, (3): 181-183. [42] 蒋东华, 朱礼亚, 沈子懿, 王兴元, 陈颖频. 结合二维压缩感知和混沌映射的双图像视觉安全加密算法[J]. 西安交通大学学报(自然科学版), 2022, 56(2): 139-148..(EI核心数据库) [43] Yingpin Chen*,Yuming Huang, Lingzhi Wang, Huiying Huang, Jianhua Song, Chaoqun Yu, Yanping Xu. Salt and pepper noise removal method based on stationary Framelet transform with non-convex sparsity regularization[J]. IET Image Processing ,2022, 16(7): 1846-1865 (CCF C类论文,中科院三区) [44] Liya Zhu, Donghua Jiang, Jiangqun Ni, Xingyuan Wang, Xianwei Rong, Musheer Ahmad, YingpinChen. A stable meaningful image encryption scheme using the newly-designed 2D discrete fractional-order chaotic map and Bayesian compressive sensing[J]. Signal Processing, 2022: 108489(SCI,中科院二区) [45] Shu Li, Bibo Yue, Yingpin Chen, et al. Multichannel impedance inversion in the frequency domain via anisotropic total variation with overlapping group sparsity regularization[J]. Journal of Inverse and Ill-posed Problems, 2022, 30(3): 307-321(SCI,中科院三区) [46] 黄育明, 戴奕婧, 李丽惠, 陈颖频*. 基于多模态模板池的抗遮挡Staple跟踪算法[J]. 探测与控制学报, 2023, 45(2): 99-108+114(北大中文核心期刊) [47] 唐毅鋆,陈颖频*, 陈惠,乔嘉琪,陈振雕,李一凡,胡强. 卷积视角下循环矩阵对角化证明新方法及应用[J]. 长春师范大学学报(自然科学版), 2023, 42(6): 67-74 [48] 李丽惠, 黄育明, 丁灿, 喻飞, 陈颖频*. 卷积视角下抗遮挡相关滤波跟踪方法[J]. 微电子学与计算机, 2022, 39(8), 63-70 [49] Yuming Huang, Yingpin Chen*, Chen Lin, Qiang Hu, Jianhua Song. Visual attention learning and anti-occlusion based correlation filter for visual object tracking[J]. Journal of Electronic Imaging, 2023, 32(1): 013023(SCI,中科院四区) [50] Yingpin Chen, Yuming Huang, Jianhua Song. Robust sparse time-frequency analysis for data missing scenarios[J]. IET Signal Processing, 2023, 17(1): e12184(SCI,中科院四区) [51] Jun Zhang, Zhaoyang Li, Lingzhi Wang, Yingpin Chen*, Jianhua Song. Salt-and-pepper denoising method for colour images based on tensor low-rank prior and implicit regularization [J]. IET Image Processing , 2023, 17(3): 886-900(SCI,中科院四区) [52] Zhen Ye, Xiaoming Ou, Yingpin Chen*. Infrared image deblurring based on Lp-pseudo-norm and high-order overlapping group sparsity regularization[J]. Algorithms, 2022, 15(9): 327(EI核心数据库) [53] Qiang Hu, Hongrun Wu, Jiahao Wu, Jinrong Shen, Haorong Hu, Zhendiao Chen, Yingpin Chen*, Lingzhi Wang*, and Hualin Zhang*. Spatio-temporal self-learning object tracking model based on anti-occlusion mechanism[J]. Engineering Letters, 2023, 31(3): 1141-1150 (SCI,中科院四区,EI核心期刊数据库) [54] Yuming Huang, Yingpin Chen*, Changhui Wu, Binhui Song, Hui Wang. Image super-resolution reconstruction network based on enhanced Swin-Transformer via alternating aggregation of local-global features[J]. IEEE Transactions on Emerging Topics in Computational Intelligence, 2025 (录用,SCI,JCR一区,中科院二区) [55] Kaiwei Chen, Lingzhi Wang, Huangyu Wu, Changhui Wu, Yuan Liao, Yingpin Chen*, Hui Wang, Jingwen Yan, Jialing Lin, Jiale He. Background-aware correlation filter for object tracking with deep CNN features [J]. Engineering Letters, 2024, 32(7): 1353-1363(SCI,中科院四区,EI核心期刊数据库) [56] Yingpin Chen, Huanyu Wu, Jun Zhang, Zhaojun Deng, Lingzhi Wang*, Wentong Huang. Deep feature based asymmetrical background aware correlation filter for object tracking[J]. Digital Signal Processing, 2024, 148: 1-19(SCI,中科院三区) [57] Yingpin Chen*, Kaiwei Chen*. Four mathematical modeling forms for a correlation filter object tracking algorithm and the fast calculation for the filter[J]. Electronic Research Archive, 2024, 32(7): 4684-4714(SCI,JCR一区,中科院四区) [58] Yingpin Chen*, Hanrong Xie, Jun Zhang, Honghe Yang, Hui Wang, Lingzhi Wang. Infrared image deblurring with Framelet regularization in the background of salt and pepper noise[J]. Journal of Modern Optics, 2024: 71(1): 1-15(SCI,中科院四区) [59] Changhui Wu, Jinrong Shen, Kaiwei Chen, Yingpin Chen*, Yuan Liao. UAV object tracking algorithm based on spatial saliency-aware correlation filter[J] . Electronic Research Archive, 2025, 33(3): 1446-1475(SCI,JCR一区,中科院四区) [60] Yingpin Chen*, Yuan Liao, Yuxi He, Xianhui He, Qianqian Yu, Ting Chen, Jianhua Song, Hualin Zhang. Non-local similar block matching and hybrid low-rank tensor network for colour image Inpainting[J]. Digital Signal Processing, 2025, 162, 105169(SCI,中科院三区) [61] Huanyu Wu, Yingpin Chen*, Changhui Wu, Ronghuan Zhang, Kaiwei Chen. A multi-scale cyclic-shift window Transformer object tracker based on fast Fourier transform[J]. Electronic Research Archive, 2025, 33(6): 3638-3672(SCI,JCR一区,中科院四区) [62] Changhui Wu, Yingpin Chen*, Jinrong Shen, Kaiwei Chen, Yuan Liao, Nuoyan Chen, Haorong Hu, Liqi Weng , Hui Wang, Fei Yu, Jingwen Yan. Selective cyclic-shifted window-based accelerated Transformer network for object tracking[J]. Digital Signal Processing, 2026: 105514(SCI,中科院三区) [63] Kaiwei Chen, Yingpin Chen*, Ronghuan Zhang, Yiling Chen, Hongshuo Han, Yijing He, Wenjie Xu, Wenbing Ye, Jinghao Li. Correlation filter object tracking algorithm based on spatial and channel attention mechanism[J]. Electronic Research Archive, 2025 , 33(8), 4857-4892 (SCI,JCR一区,中科院四区) |
发明专利 | [1] 陈颖频, 林凡, 程祝媛, 李曙, 彭真明, 闫敬文, 陈育群, 喻飞. 一种图像去模糊方法[P]申请号:201810066682.4, 申请日:2018-1-24, 授权公告号:CN108198149B,授权公告日:2019-01-29 [2] 陈颖频, 王灵芝,陈育群, 林凡, 喻飞. 地震信号随机噪声衰减方法、终端设备及存储介质[P] 申请号:201810487212.5, 授权公告号:CN108710851B,授权公告日:2021-4-16 [3] 陈颖频, 王灵芝,陈育群, 林凡, 喻飞. 一种地震信号谱分解方法[P] 申请号:201810493125.0, 申请日:2018-5-22, 授权公告日:2019-10-11,授权公告号:CN108761530 [4] 王灵芝, 陈颖频. 一种基于Lp伪范数与交叠组稀疏的脉冲噪声古籍图像修复方法[P] 申请号:201810620163.8, 申请日: 2018-6-19, 授权公告号: CN109146797B, 授权公告日:2019-10-25 [5] 彭真明, 李美惠, 陈科, 潘翯, 陈颖频, 王晓阳, 孙伟嘉, 任丛雅旭, 卓励然, 蒲恬, 张萍. 一种多模板时空关联的局部反联合稀疏表示目标跟踪方法[P] 申请号: 201710100030.3, 申请日: 2017-02-23 [6] 彭真明, 李曙, 汪春宇, 马淼, 吴昊, 王雨青, 陈颖频, 刘伟, 廖龙, 赵学功, 杨立峰. 一种基于广义全变分正则化的地震反演方法及系统[P] 申请号: 201711194538.0, 申请日: 2017-11-24 [7] 王灵芝, 陈颖频, 柯素玲. 一种图像填补方法、终端设备及存储介质[P]. 申请号: 201910329883.3,申请日:2019-4-23,CN110084759 B,授权公告日:2020-6-9 [8] 陈育群, 陈颖频, 林凡, 喻飞, 王灵芝. 一种基于高阶交叠组稀疏全变分图像恢复方法[P] 申请号: 201910297570.4, 2019年8月8日, CN110084756 B, 授权公告日:2020-12-29 [9] 林凡, 陈育群, 陈颖频,喻飞,一种图像恢复方法[P]. 专利证书号:ZL 2018 1 0189573.1, 授权公告号:CN 108416750 B [10] 陈颖频, 孔俊雅, 虞虹玲, 林晨, 蒋旻佚, 罗崇淼. 一种目标跟踪方法、终端设备及存储介质[P]. 申请号: 202110153228.4, 申请日: 2021-2-4, 授权日:2023.4.25, 授权公告号:CN 112837342 B [11] 陈颖频, 王灵芝, 黄慧滢, 喻飞, 林凡, 陈育群, 徐国荣, 王海光, 何丽. 一种古籍图像修复方法、终端设备及存储介质[P]. 申请号: 202110514674.3, 申请日: 2021-5-12,授权日:2023.5.12,授权公告号:CN 113139920 B [12] 陈颖频,王海光,王灵芝,喻飞,林凡,陈育群,宋建华,何丽,陈悦. 一种信号鲁棒稀疏时频分析方法、终端设备及存储介质[P]. 申请号: 202111270269.8 , 申请日: 2021-10-29, 授权公告日: 2025年05月23日, 授权公告号: CN 113935246 B [13] 虞虹玲, 陈颖频, 蔡宇晴, 张月轩, 陈悦, 邓肇俊, 胡瑞松, 刘桥瑞, 杨博文, 张夏杰, 杨康. 一种无人机目标跟踪方法、终端设备及存储介质[P]. 申请号: 202110782180.3, 申请日: 2021-07-12,授权日:2023-05-09, 授 权 公 告 号:CN 113379804 B [14] 陈振雕, 陈颖频, 邓肇俊, 陈育群, 林嘉铃, 胡浩荣, 沈金荣, 何家乐, 宋彬辉. 一种基于非对称背景感知的目标跟踪方法、设备及介质[P]. 申请号: 2023110437127, 申请日: 2023-08-18, 授权日:2025-05-16,授权公告号:CN 116993782 B [15] 谢瀚荣,吴昌徽,黄育明,廖源,陈颖频,宋彬辉,胡浩荣,陈晶晶,张钦洪,陈星萍,李倩,张妹珠. 一种超分辨图像重建方法、终端设备及存储介质[P]. 申请号: 2024100564417,申请日: 2024-01-16,授权日:2024-07-1 [16] 张华林, 胡强, 林晨, 陈颖频, 严佳怡, 李凯特, 李一凡, 乔嘉琪, 何耀驰, 张月轩, 杨博文, 张夏杰, 蔡宇晴, 陈振雕, 陈育群, 陈海英. 一种目标跟踪方法、终端设备及存储介质[P]. 申请号: 202210896598.1,申请日: 2022-01-16 [17] 陈颖频 , 廖源, 黄文通, 邵先峰, 吴昌徽, 陈开伟, 吴桓宇, 韦才治, 卢彦霖, 王琳涵, 何宇茜, 张华林, 翁力琪, 何先会, 郭锦东, 陈诺言, 方思容, 许育娟. 一种基于循环移位窗口的目标跟踪方法、终端设备及介质[P]. 申请号: 2024110179774,申请日: 2024-07-26 |