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个人简介

教育经历 2013年9月-2019年3月,在北京理工大学获得航空宇航科学与技术专业博士学位 2017年9月-2018年9月,加拿大西蒙菲沙大学机电工程学院CSC博士联合培养 2013年3月-2013年6月,俄罗斯萨马拉国立航空航天大学访学 2009年9月-2013年6月,在北京理工大学获得飞行器设计与工程专业学士学位 工作经历 2021年4月至今,北京理工大学宇航学院飞行器工程系,特别研究员(预聘副教授) 2019年3月-2021年3月,清华大学航天航空学院航空系 博士后,合作导师:宝音贺西 社会兼职 《战术导弹技术》青年编委 《无人系统技术》青年编委 《Engineering Optimization》《机械工程学报》等期刊审稿人

研究领域

飞行器总体设计 飞行器多学科设计优化理论及应用 数据驱动的复杂系统智能优化方法

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Renhe Shi, Li Liu, Teng Long(*), Yufei Wu, Yifan Tang. Filter-based Adaptive Kriging Method for Black-box Optimization Problems with Expensive Objective and Constraints[J]. Computer Methods in Applied Mechanics and Engineering, 2019, 347: 782-805. Renhe Shi, Li Liu, Teng Long(*), Yufei Wu, Yifan Tang. Filter-based Sequential Radial Basis Function Method for Spacecraft Multidisciplinary Design Optimization[J]. AIAA Journal, 2018, 57(3): 1019-1031. Renhe Shi, Li Liu, Teng Long(*), Jian Liu. Sequential Radial Basis Function Using Support Vector Machine for Expensive Design Optimization [J]. AIAA Journal, 2016, 55(1): 214-227. Renhe Shi, Li Liu, Teng Long(*), Yufei Wu, G. Gary Wang. Multi-Fidelity Modeling and Adaptive Co-Kriging-Based Optimization for All-Electric Geostationary Orbit Satellite Systems[J]. Journal of Mechanical Design, 2020, 142(2): 021404. Teng Long, Zhao Wei, Renhe Shi(*), Yufei Wu. Parallel Adaptive Kriging Method with Constraint Aggregation for Expensive Black-Box Constrained Optimization Problems [J]. AIAA Journal, 2021.(通信作者) Yifan Tang, Teng Long, Renhe Shi(*), Yufei Wu, G. Gary Wang. Sequential Radial Basis Function Based Optimization Method Using Virtual Sample Generation[J]. Journal of Mechanical Design, 2020, 142(11):111701.(通信作者) Yufei Wu, Teng Long, Renhe Shi(*), G. Gary Wang. Mode-Pursuing Sampling Method Using Discriminative Coordinate Perturbation for High-dimensional Expensive Black-box Optimization[J]. Journal of Mechanical Design, 2020, 143(4): 041703.(通信作者) Renhe Shi, Li Liu, Teng Long(*), Yufei Wu, G. Gary Wang. Multidisciplinary Modeling and Surrogate Assisted Optimization for Satellite Constellation Systems[J]. Structural and Multidisciplinary Optimization, 2018, 58(5): 2173-2188. Renhe Shi, Teng Long, Hexi Baoyin(*). Multi-fidelity and Multi-objective Optimization of Low-thrust Transfers with Control Strategy for All-electric Geostationary Satellites[J]. Acta Astronautica, 2020, 177: 577-587. Renhe Shi, Li Liu, Teng Long(*), Jian Liu, Bin Yuan. Surrogate Assisted Multidisciplinary Design Optimization for an All-electric GEO Satellite[J]. Acta Astronautica, 2017, 138: 301-317. Renhe Shi, Li Liu(*), Teng Long, Jian Liu. An Efficient Ensemble of Radial Basis Functions Method based on Quadratic Programming[J]. Engineering Optimization, 2016, 48(7): 1202-1225. Renhe Shi, Teng Long, Hexi Baoyin(*), Nianhui Ye, Zhao Wei. Adaptive Kriging Assisted Optimization of Low-Thrust Many-Revolution Transfers to Geostationary Earth Orbit[J]. Engineering Optimization, 2020.

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