代表期刊论文 :
近五年的代表性SCI论文:
[1] Yeping Peng, Desheng Kong, Zihao Wang, Song Wang*, Chaozong Liu, Guang-Zhong Cao*. Wear evolution analysis of artificial joints based on wear particle recognition: A study under insufficient and imbalanced sample scenarios. Friction, 2026, 14(9): 9441236. (JCR一区, IF: 8.1)
[2] Yeping Peng, Rongrun Zhuang, Kaiyu Luo, Chao Wu, Song Wang, Chaozong Liu, Guang-Zhong Cao*. Friction-induced vibration-based online wear state identification of artificial knee joints: enhancement with wear particle features. Wear, 2026, 601: 206848. (JCR小一区/Top, IF: 7.2 )
[3] Jian Song, Guiyang Liu, Shenglin Li, Xuanye Liu, Yeping Peng*. Effects of braiding parameters on the mechanical and tribological properties of artificial ligaments. Biosurface and Biotribology, 2026, 12: e70021.
[4] Yeping Peng, Jianrui Xu, Guangzhong Cao*, Runhao Zeng*. Binocular-separated modeling for efficient binocular stereo matching. IEEE Transactions on Intelligent Transportation Systems, 2025, 26(3): 3028-3038. (JCR一区, IF: 9.1)
[5] Chao Wu, Zijing Zhou, Hong Qiu, Guowei Duan, Yeping Peng*. Multi-step prediction of greenhouse crop growth based on the SVR_Seq2Seq model. Smart Agricultural Technology, 2025, 11: 100986. (JCR二区, IF: 7.1)
[6] Kuncheng Chen, Song Wang*, Pian Zhong*, Yeping Peng*, Junzhe Lu, Lanlan Liu, Jinmei He, Weiqiang Liu. Uniformity and stability of saliva composition based on glucose concentration analysis. Clinica Chimica Acta, 2025, 573: 120283.
[7] Shucong Qin, Tao Wang*, Yeping Peng*, Tao Gong, Wei Chen, Haoxian Wang. Evaluation of smaller milling cutter health based on volumetric wear parameters. International Journal of Precision Engineering and Manufacturing, 2025, 26(4): 837-848.
[8] Yeping Peng, Deyu Kong, Song Wang*, Guang-Zhong Cao*, Chaozong Liu. In-vitro investigation on the tribological properties of nickel-titanium (NiTi) alloy used in braided vascular stents. Tribology Transactions, 2024, 67(5): 1002-1015.
[9] Yeping Peng, Guiyang Liu, Shenglin Li, Zeng Li, Jian Song*. A machine learning system for artificial ligaments with desired mechanical properties in ACL reconstruction applications. Journal of the Mechanical Behavior of Biomedical Materials, 2024, 159: 106691. (JCR二区, IF: 3.3)
[10] Zihao Wang, Jian Song, Yeping Peng*. New insights and perspectives into biodegradable metals in cardiovascular stents: A mini review. Journal of Alloys and Compounds, 2024, 1002: 175313. (JCR二区/Top, IF: 5.8)
[11] Yeping Peng, Youyi Zhou, Song Wang, Guang-Zhong Cao*, Chaozong Liu. Three-dimensional reconstruction of wear particle surfaces using multi-focus image sequence. Measurement, 2024, 235: 114925. (JCR二区/Top, IF: 5.6)
[12] Yeping Peng, Shengdong Lin, Hongkun Wu, Guangzhong Cao*. Point cloud registration based on fast point feature histogram descriptors for 3D reconstruction of trees. Remote Sensing, 2023, 15(15): 3775. (JCR二区/TOP, IF: 5.6)
[13] Yeping Peng, Hongtao Yue, Song Wang, Guangzhong Cao*, Hongkun Wu*, Chaozong Liu. Probability-weighted ensemble support vector machine for intelligent recognition of moving wear debris from joint implant. Tribology International, 2023, 186: 108583. (JCR一区, IF: 5.62)
[14] Yeping Peng, Shucong Qin, Tao Wang*, Yixi Hu, Shiping Nie. Volume monitoring of the milling tool tip wear and breakage based on multi-focus image three-dimensional reconstruction. International Journal of Advanced Manufacturing Technology, 2023, 126: 3383-3400.
[15] Genping Zhao, Junhao Qiu, Yeping Peng*, Xiaowei Zhang. Development of RGB-D simultaneous localization and mapping in dynamic environments based on motion removal and dense map reconstruction. Journal of Applied Remote Sensing, 2022, 16(4): 044526.
[16] Yeping Peng, Weijiang Wang, Zhen Tang, Guangzhong Cao*, Shengxi Zhou*. Non-uniform illumination image enhancement for surface damage detection of wind turbine blades. Mechanical Systems and Signal Processing, 2022, 170: 108797. (JCR一区, IF: 8.934)
[17] Yeping Peng, Zhen Tang, Genping Zhao, Guangzhong Cao*, Chao Wu. Motion blur removal for UAV-based wind turbine blade images using synthetic datasets. Remote Sensing, 2022, 14(1): 87. (JCR二区/TOP, IF: 5.349)
[18] Weijiang Wang, Yeping Peng*, Guangzhong Cao, Xiaoqin Guo, Ngaiming Kwok. Low-illumination image enhancement for night-time UAV pedestrian detection. IEEE Transactions on Industrial Informatics, 2021, 17(8): 5208-5217. (JCR一区, IF: 11.648)
[19] Yeping Peng, Mingbin Yang, Guangzhong Cao, Genping Zhao*. Binocular-vision-based structure from motion for 3D reconstruction of plants. IEEE Geoscience and Remote Sensing Letters, 2022, 19: 8019505. (JCR二区, IF: 5.343)
[20] Yeping Peng*, Zhengbin Wu, Guangzhong Cao*, Song Wang*, Hongkun Wu, Chaozong Liu, Zhongxiao Peng. Three-dimensional reconstruction of wear particles by multi-view contour fitting and dense point-cloud interpolation. Measurement, 2021, 181: 109638. (JCR二区, IF: 5.131)
近五年的中文核心期刊论文:
[1] 孔德宇, 彭业萍*, 庄溶润, 王松, 曹广忠. 镍钛编织支架的磨屑特征与细胞毒性关系研究[J]. 摩擦学学报, 2025, 45(3): 363-373.
[2] 徐星宇, 周友逸, 彭业萍*, 吴超, 曹广忠. 基于动力学仿真的人工膝关节振动信号采集系统设计[J]. 医用生物力学, 2024, 39(06): 1079-1085.
[3] 吴超, 周紫静, 黄锦铧, 许啸寅, 邱洪*, 彭业萍*. 基于长短时记忆的农作物生长环境数据预测[J]. 深圳大学学报(理工版), 2024, 41(5): 563-573.
[4] 彭业萍, 孔德宇, 庄溶润, 王松*, 曹广忠. 人工关节组合界面的磨损行为研究进展[J]. 清华大学学报(自然科学版), 2024, 64(03): 409-420.
[5] 付松卿, 王松*, 陈凯, 张述, 秦颖, 彭业萍, 刘伟强. 人工膝关节不同体外磨损周期的UHMWPE磨屑特征及细胞毒性研究[J]. 摩擦学学报, 2023, 43(09): 986-994.
[6] 吴昌松, 彭业萍*, 曹广忠, 闫妍. 面向三维重建的无人机航拍路径规划技术研究综述[J]. 测绘通报, 2022, (08): 98-103+122.
[7] 伍锐斌, 彭业萍*, 曹广忠, 王松, 曹树鹏. 人工关节磨屑的显微单视图深度估计方法研究[J]. 润滑与密封, 2022, 47(07): 40-48.
[8] 唐震, 彭业萍*, 王伟江, 曹广忠, 吴超. 融合Hough直线检测和Grab-cut的风机叶片自适应分割方法[J]. 电子测量与仪器学报, 2021, 35(4): 161-168.
代表专利:
[1] 宋剑, 彭业萍, 伍嘉昊, 李昇霖, 范雪, 张超. 一种韧带移植物力学性能的辅助测试装置[P]. 发明专利, 专利号: ZL202510966699.5. (授权)
[2] 宋剑, 彭业萍, 刘贵洋, 张超. 一种基于机器学习的人工韧带制备方法及系统[P]. 发明专利, 申请号: 2024107793667.
[3] 彭业萍, 伍嘉昊, 周友逸, 范雪, 曹广忠. 一种四自由度膝关节假体摩擦磨损试验机[P]. 发明专利, 申请号: 202410632866.8.
[4] 彭业萍, 周友逸, 徐星宇, 曹广忠. 一种膝关节磨损状态的监测方法及相关装置[P]. 发明专利, 申请号: 202311435418.0.
[5] 彭业萍, 许剑锐, 曹广忠. 融合2D和3D编解码网络的双目立体匹配方法及相关装置[P]. 发明专利, 申请号: 202310089029.0.
[6] 彭业萍, 岳红涛, 曹广忠. 一种基于多视角特征的运动磨粒识别方法及相关装置[P]. 发明专利, 专利号: ZL202310033908.1. (授权)
[7] 王涛, 覃树聪, 聂世平, 彭业萍, 陈伟, 罗显博, 王浩贤, 胡翊浠, 林德权, 罗沚晴. 刀尖三维重建的检测装置及在线检测方法[P]. 发明专利, 专利号: ZL202210096531.X. (授权)
[8] 彭业萍, 陈炜彬, 曹广忠. 一种基于多聚焦图像的磨损颗粒表面重构方法及相关装置[P]. 发明专利, 专利号: ZL202111397466.6. (授权)
[9] 彭业萍, 张晓伟, 曹广忠, 吴超. 一种动态环境移动机器人的定位方法[P]. 发明专利, 专利号: ZL202110388370.7. (授权)
[10] 彭业萍, 张晓伟, 曹广忠, 吴超. 一种动态环境移动机器人的环境地图构建方法[P]. 发明专利, 专利号: ZL202110389497.0. (授权)
[11] 彭业萍, 张晓伟, 曹广忠, 吴超. 一种动态环境移动机器人的定位方法[P]. PCT专利, 国内案号: 211313-PI-053.
[12] 彭业萍, 蔡俊豪, 曹广忠, 曹树鹏. 润滑油磨粒在线监测方法、终端及存储介质[P]. 发明专利, 专利号: ZL201810771554.X. (授权)
[13] 彭业萍, 吴敏, 曹广忠, 阮松波. 棱边缺陷检测方法、装置、电子设备及存储介质[P]. 发明专利, 专利号: ZL201811478391.2.(授权,开放许可)
[14] 彭业萍, 岳红涛, 吴昌松, 曹广忠. 一种磨粒动态视频采集机构[P]. 实用新型专利, 申请号: ZL202320075297.2. (授权)
[15] 彭业萍, 王伟江, 曹广忠, 郭小勤. 一种图像获取装置[P]. 实用新型专利, 专利号: ZL202021775757.5. (授权,开放许可)
[16] 彭业萍, 陈炜彬, 曹广忠, 曹树鹏. 一种三维重建装置[P]. 实用新型专利, 专利号: ZL202021525098.X.( 授权)