撰写论文、专著、教材等
主要论文: 英文期刊论文: 2023 [1] Xiaodong Jiao, Yumin Zhao, ..., Hao Sun*, et al. Learning-based Acoustic Displacement Field Modeling and Micro-Particle Control[J], Expert Systems with Applications, 2023,accept. (通讯作者,IF:8.5,SCI,中科院1区,Top期刊) [2] Hong Zhu, Qinglin Sun, Hao Sun*, et al. Aerodynamic prediction for flight dynamics simulation of parafoil system and airdrop test validation[J]. Nonlinear Dynamics, 2023, 111: 11065–11085. (通讯作者,IF:5.6,SCI,中科院2区) [3] Xiaodong Jiao, Mingfeng Yuan, Jin Tao, Hao Sun, et al. Memristor hyperchaos in a generalized Kolmogorov-type system with extreme multistability[J]. Chinese Physics B, 2023, 32(1): 010507. (通讯作者,SCI,中科院3区)
[4] Xiaodong Jiao, Xinyu Wang, Jin Tao, Hao Sun, et al. Dynamic modelling and Chaos control for a thin plate oscillator Using Bubnov-Galerkin integral method[J]. Chinese Physics B, 2023, accept. (通讯作者,SCI,中科院3区) [5] Xiaodong Jiao, Jin Tao, Hao Sun, et al. Modeling of Acoustic Vibration Theory Based on a Micro Thin Plate System and Its Control Experiment Verification[J]. Sustainability, 2023, 14(22): 14900. (通讯作者,SCI,中科院3区) 2022-2019
[1] Hao Sun, Qinglin Sun, Mingwei Sun, et al. Accurate Modeling and Homing Control for Parafoil Delivery System based on Wind Disturbance Rejection[J]. IEEE Transactions on Aerospace and Electronic Systems, 2022, 58(4): 2916 - 2934. (IF:4.4,SCI,中科院1区,Top期刊) [2] Hao Sun, Qinglin Sun, Xianyi Zeng, et al. Accurate Homing of Parafoil Delivery Systems based Glide-ratio Control[J], IEEE Transactions on Aerospace and Electronic Systems, 2020, 56(3): 2374 - 2389. (IF:4.4,SCI,中科院1区,Top期刊) [3] Hao Sun, Fuyong Wang, Qinglin Sun, et al. Distributed consensus algorithm for multiple parafoils in mass airdrop mission based on disturbance rejection[J]. Aerospace Science and Technology, 2021, 109: 106437.(IF:5.3,SCI,中科院1区,Top期刊) [4] Hao Sun, Qinglin Sun, Wannan Wu, et al. Altitude control for flexible wing unmanned aerial vehicle based on active disturbance rejection control and feedforward compensation[J], International Journal of Robust and Nonlinear Control, 2020, 30(1): 222-245. (IF:3.9,SCI,中科院1区,Top期刊) [5] Hao Sun, Qinglin Sun, Shuzhen Luo, et al. In-flight compound homing methodology of parafoil delivery systems under multiple constraints[J]. Aerospace Science and Technology, 2018, 79: 85-104.(IF:5.3,SCI,中科院1区,Top期刊) [6] Hao Sun, Shuzhen Luo, Qinglin Sun, et al. Trajectory optimization for parafoil delivery system considering complicated dynamic constraints in high-order model[J]. Aerospace Science and Technology, 2020, 98: 105631.(IF:5.3,SCI,中科院1区,Top期刊)
[7] Zhenping Yu, Hao Sun, Qinglin Sun, et al. Wind field identification for parafoil based on Deep Q-learning iterative inversion[J]. Information Sciences, 2022, 610: 571-591. (IF:8.1,SCI,中科院1区,Top期刊) [8] Jin Tao, Qinglin Sun, Hao Sun, et al. Dynamic modeling and trajectory tracking control of parafoil system in wind environments[J]. IEEE/ASME Transactions on Mechatronics, 2017, 22(6): 2736-2745. (IF:6.4,SCI,中科院1区,Top期刊) [9] Hao Sun, Qinglin Sun, Wannan Wu, et al. Flexible modelling and altitude control for powered parafoil system based on active disturbance rejection control[J]. International Journal of Systems Science, 2019, 50(12): 2385-2408.(SCI,中科院3区) [10] Hao Sun, Qinglin Sun, Jin Tao, et al. A hybrid control approach for powered parafoil combining active disturbance rejection control and unbalanced load compensation[J]. Proceedings of the Institution of Mechanical Engineers, Part I: Journal of Systems and Control Engineering, 2018, 232(3): 299-314. (SCI,中科院4区) [11] Hao Sun, Qinglin Sun, Zengqiang Chen, et al. An optimal‐multiphase homing methodology for powered parafoil systems[J]. Optimal Control Applications and Methods, 2020, 41(4): 1118-1142. (SCI,中科院4区) [12] Jiaming Yu, Hao Sun, Junqing Sun. Improved twin delayed deep deterministic policy gradient algorithm based real-time trajectory planning for parafoil under complicated constraints[J]. Applied Science - Basel, 2022, 12(16): 8189. (通讯作者,SCI,中科院3区) [13] Xiaodong Jiao, Jin Tao, Hao Sun, et al. Kinematic modes Identification and its intelligent control of micro-nano particle manipulated by acoustic signal[J]. Mathematics, 2022, 10(21): 4156. (通讯作者,SCI,中科院2区) 中文期刊论文:
[1] 孙昊,孙青林,陈增强等. 复杂环境下考虑动力学约束的翼伞轨迹规划[J]. 航空学报, 2021,42(03):372-381. [2] 孙昊,孙青林,陈增强等. 大规模空投中的多翼伞一致性控制算法[J].控制理论与应用,2021, 38(12):1993-2000. [3] 孙昊,孙青林,孙明玮等. 随机初值条件下基于翼伞的无人机回收方法[J].兵工学报,2023, 44(03):718-727. [4] 徐连迪,孙昊,孙俊清等. 基于声波操纵的微小物体运动建模与控制[J]. 控制理论与应用, 2023. (通讯作者) [5] 孙昊,孙青林,卢伟涛. 基于风场前馈-自抗扰控制的动力翼伞高度控制研究[J]. 国防科技大学学报, 2023. (通讯作者) 教改论文: [1] 孙昊,许丽,孙青林等. 针对声波操纵微小物体的人工智能实验课程设计[J]. 实验室研究与探索, 2022,42(04):175-178. (中文核心) 会议论文: [1] Hao Sun, Qinglin Sun, et al. Compound trajectory optimiz-ation methodology for parafoil delivery system based on quantum genetic algorithm[C]. FLINS 2018, 获该会议Bset Student Paper Award. [2] Hao Sun, Qinglin Sun, et al. Accurate Homing Control of Parafoil Delivery System Based on Active Disturbance Rejection Control[C]. DDCLS 2021. [3] Hao Sun, Qinglin Sun, et al. Cooperative control of a novel spacecraft recycling system based on Gauss pseudo-spectral method[C]. CAC 2020. [4] Hao Sun, Qinglin Sun, et al. Trajectory optimization of a novel cooperative recycling system based on Gauss pseudo-spectral method[C]. FLINS 2020. [5] Hao Sun, Qinglin Sun, et al. A flight control system for parafoils based on improved PID control approach[C]. CCC2017. |