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何晶靖
( 副教授 )
赞
的个人主页 http://shi.buaa.edu.cn/09722/zh_CN/index.htm
副教授 博士生导师 硕士生导师
教师英文名称:
Jingjing He
教师拼音名称:
He Jingjing
电子邮箱:
182816dbe7d67d3e338b7b7d98e822edfaf60ca3209fec6321478ce5509293b69e4a2acb6c55133a4ec7524eb5d983cd022bb1d486ca13e74c8c06dda3721930ef40c944295a114d025c6cd5d3620cc918bbbbf1016745c4723b686f4f3e389868a25e7fbc177f8fce903249a95bb78e4feb41b7d1ca41b674bf01bffcca3e6e
所在单位:
可靠性与系统工程学院
学历:
博士研究生
办公地点:
为民楼334
性别:
女
联系方式:
hejingjing@buaa.edu.cn
学位:
博士
在职信息:
在职
毕业院校:
Clarkson University
论文
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论文
[21]
.21. J. He, Y. Ran, L. Bin, and X. Guan, "A Fatigue Crack Size Evaluation Method Based on Lamb Wave Simulation and Limited Experimental Data", Sensors, 2017, 17(9): 2097
[22]
.22. F. Sun, N. Wang, J. He*, X. Guan, and J. Yang, "Lamb Wave Damage Quantification Using GA-Based LS-SVM", Materials, 2017, 10(6):648
[23]
.23. X. Guan, Y. Wang, and J. He*, "A Probabilistic Damage Identification Method for Shear Structure Components Based on Cross-Entropy Optimizations", Entropy, 2017, 19(1):27
[24]
.24. J. He, Y. Zhou, X. Guan, W. Zhang, Y. Wang and W. Zhang, "An integrated health monitoring method for structural fatigue life evaluation using limited sensor data", Materials, 2016, 9(11): 894
[25]
.25. J. He, J. Yang, Y. Wang and H. Waisman, "Probabilistic modeling and sizing of hole-edge crack using Fiber Bragg Grating sensor and high-order extended finite element method ", Sensors, 2016, 16(11):1956
[26]
.26. J. He, X. Guan and R. Jha, "Improve the accuracy of asymptotic approximation in reliability problems involving multi-modal distributions", IEEE Transactions on Reliability, 2016, 99:1-13
[27]
.27. J. He, Y. Zhou, X. Guan, W. Zhang, W. Zhang and Y. Liu, "Time domain strain/stress reconstruction based on empirical mode decomposition: numerical study and experimental validation". Sensors, 2016, 16(8):1290.
[28]
.28. J. Yang, J. He*, X. Guan, D. Wang, H. Cheng, W. Zhang and Y. Liu, "A probabilistic crack size quantification method using in-situ Lamb wave test and Bayesian updating", Mechanical Systems and Signal Processing, 2016, 78:118-133.
[29]
.29. W Zhang, Z. Bao, S. Jiang and J. He. An Artificial Neural Network-Based Algorithm for Evaluation of Fatigue Crack Propagation Considering Nonlinear Damage Accumulation. Materials, 2016, 9(6): 483.
[30]
.30. J. Shan, W. Zhang, J. He and Z. Wang, “Comparative study between crack closure model and Willenborg model for fatigue prediction under overload effects”, Chinese Journal of Aeronautics, 2016 (in press)
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