是国家自然科学基金通讯评审专家,北京、浙江和湖南自然科学基金通讯评审专家。“Mechanical Systems and Signal Processing”,“IEEE Transactions on Industrial Electronics”, “The International Journal of Advanced Manufacturing Technology”,“Journal of Vibration and Control”,“Engineering Applications of Artificial Intelligence”和“Journal of Automobile Engineering, Proceedings of the Institution of Mechanical Engineers Part D”等学术期刊审稿人;《振动、测试与诊断》杂志编委。
主持课题:
1.国家自然科学基金面上项目,52175094,基于扩展MITC元和脉冲神经网络的板壳缺陷分析与识别方法(2022.1-2025.12)
2.国家重点研发计划项目,2020YFB2007702,“面向大数据的高端轴承状态监测与健康管理技术”/课题2“多源异构信息融合与运行状态动态监测”, (2020.10-2023.09)
3. 深圳富士康公司“基于大数据的高端精密机床的新一代智能维护系统” (2018.6-2019.12)
4. 上海振华重工(集团)股份有限公司“上海洋山港四期双起升双小车岸边集装箱起重机机构在线监测系统”, (2017.12-2020.12)
5. 国家自然科学基金面上项目“超声子波缺陷散射的小波有限球法与视频放大方法”,(2016.1-2019.12)
6. 国家自然科学基金面上项目“基于零矩尺度函数的粗糙裂纹面声散射特征计算与识别方法”,(2011.1-2013.12)
7. 国家自然科学基金面上项目“基于小波的机械故障警戒机方法与应用”(2007.1-2009.11)
8. 国家863重点项目课题“混凝土泵车远程监控及维护应用系统研制”子课题,(2009.6-2010.12)
参加项目:
1. 国家重点研发计划项目,2020YFB1709800,“大型旋转机组健康管理系统软件” (2020.11-2023.10)
2. 广东省重点研发计划,2020B090927002,高速直驱高精度数控机床的研发及应用, (2020.01-2023.12)
3. 国家工信部项目(与华中数控合作)“华中9型—新一代智能型数控系统研究开发及应用验证”,(2018.10-2020.12)
4. 国家自然科学基金面上项目“基于切削大数据的刀具全工艺流程寿命模型及其在数控系统中的融合”,(2017.1-2020.12)
5. 2011计划高端制造装备协同创新中心(西安交通大学)(2014 -2019)
6. 国家自然科学基金面上项目“结构与其表面功能器件的布局优化及基于水平集的多类型表面优化方法”,(2016.1-2019.12)
7. 国家科技支撑计划课题“高速列车数字化平台研究”
8. 国家自然科学基金青年科学基金项目“基于表面纳米褶皱的微纳分级结构仿生制造工艺研究”
9. 国家重点基础研究发展规划项目(973项目)“数字化制造基础研究”“难加工航空零件的数字化制造基础研究”“我国电力大系统灾变防治和经济运行的重大科学问题研究”
10. 国家“九五”攀登项目B计划“大型机电设备若干动力学关键技术的研究”。
论文专著与专利
论 著:
[1] 杨叔子,吴雅,轩建平. 时间序列分析的工程应用(第二版,上下册).武汉:华中科技大学出版社,2007.
[2] Klaus-Jürgen Bathe著, 轩建平译. 有限元法: 理论、格式与求解方法(2019年版,上下册). 北京:高等教育出版社,2020.
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http://www.hepmall.com.cn/index.php/product-23332.html
又见麻省理工学院网站和ADINA公司网址
http://meche.mit.edu/people/faculty/kjb@mit.edu
http://www.adina.com/pubs/publications43.shtml
[3] Zisheng Wang, Jianping Xuan. Intelligent fault recognition framework by using deep reinforcement learning with one dimension convolution and improved actor-critic algorithm. Advanced Engineering Informatics, 2021,49, https://doi.org/ 10.1016/ j.aei.2021.101315.
[4] Qing Zhang,Lv Tang,Menglin Sun,Jianping Xuan,Tielin Shi. A statistical distribution recalibration method of soft labels to improve domain adaptation for cross-location and cross-machine fault diagnosis. Measurement,2021,182, September , 109754. https: // doi.org/ 10.1016/j.measurement.2021.109754.
[5] Rui Li, Jianping Xuan, Tielin Shi. A Frequency Parameter Calculator Based on a Phase Difference Method. Measurement, 2021: 109549. DOI: https://doi.org/ 10.1016/j.measurement.2021.109549. Volume 181, August 2021, 109549.
[6] Leilei Zhang, Jingli Yuan,Shuai He,Shuai Huang,Shoucong Xiong, TielinShi, Jianping Xuan. Contact heat transfer analysis between mechanical surfaces based on reverse engineering and FEM,Tribology International,25 Mar 2021,10.1016/ j.triboint. 2021. 107097. Volume 161, September 2021, 107097.
[7] Lv Tang, Jianping Xuan, TielinShi, Qing Zhang. EnvelopeNet: A robust convolutional neural network with optimal kernels for intelligent fault diagnosis of rolling bearings. Measurement,2021,180(8), doi: https://doi.org/ 10.1016/ j.measurement.2021.109563.
[8] Rui Li, Jianping Xuan, Tielin Shi. Frequency Estimation Based on Symmetric Discrete Fourier Transform. Mechanical Systems and Signal Processing,2021,160, 107911. https://doi.org/ 10.1016/ j.ymssp. 2021. 107911
[9] Anas H. Aljemely,Jianping Xuan,Long Xu, Farqad K. J. Jawad, and Osama Al-Azzawi.Wise-local response convolutional neural network based on Naïve Bayes theorem for rotating machinery fault classification. Applied Intelligence. https://doi.org/ 10.1007/ s10489 -021-02252-2.
[10] Anas H. Aljemely, Jianping Xuan, Farqad K. J. Jawad, Osama Al-Azzawi and Ali S. Alhumaima (2020). A novel unsupervised learning method for intelligent fault diagnosis of rolling element bearings based on deep functional autoencoder. Journal of Mechanical Science and Technology,2020,34(11):4367-4381. http: //doi.org /10.1007/ s12206 - 020-1002-x.
[11] Shuai He, Jianping Xuan, Wenhao Du, Qi Xia, Shoucong Xiong, Leilei Zhang, Yinfeng Wang, Jinzhou Wu, Hongfei Tao, Tielin Shi. Spiral tool path generation method in a NURBS parameter space for the ultra-precision diamond turning of freeform surfaces. Journal of Manufacturing Processes, 2020,60: 340–355, https:// doi.org/ 10.1016/ j.jmapro.2020.10.073.
[12] Leilei Zhang,Jianping Xuan,Tielin Shi,Rui Li,Shuai He,Lv Tang. Robust, fractal theory, and FEM-based temperature field analysis for machine tool spindle. The International Journal of Advanced Manufacturing Technology, 2020,111(5): 1571-1586, https:// doi. org /10.1007/s00170-020-05926-2.
[13] Leilei Zhang, Jianping Xuan and Tielin Shi. Obtaining More Accurate Thermal Boundary Conditions of Machine Tool Spindle Using Response Surface Model Hybrid Artificial Bee Colony Algorithm, Symmetry 2020, 12(3), 361; doi:10.3390/ sym12030361.
[14] Rui Li, Jianping Xuan and Tielin Shi. A frequency estimation method for two adjacent frequencies. Measurement, 2020,157, 107614. doi: 10. 1016 / j.measurement. 2020.107614.
授权的发明专利:
[1] 轩建平,贾广飞,吴波,李斌,刘红奇,胡友民,程瑶,刘晓龙,谢锋云.一种重型数控装备测控传感网, ZL201110200363.6,授权日2013-05-22
[2] 轩建平,李锐,刘超峰,翟康. 一种视频运动放大方法. ZL201611264001.2,授权日2019-02-03
[3] 轩建平,李锐.一种高精度的简谐信号参数估计方法. ZL201910213294.9, 授权日2020-11-17
[4]轩建平,王子胜.一种仿生机械腿. ZL202011454311.7,授权日2021-09-03
[5]轩建平,李锐,唐律,张青.一种时频分析方法和系统. ZL1202011337810.8,授权日2021-08-19