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Songyan Wang
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2020 – today
- 2024
- [j11]Tao Chao, Shuai Wang, Songyan Wang, Ming Yang:
A many-objective evolutionary algorithm combining simplified hypervolume and a method for reference point sampling based on angular relationship. Appl. Soft Comput. 163: 111881 (2024) - [j10]Hong Zhang, Songyan Wang, Yuanshuai Liu, Pengtao Ji, Runzhuo Yu, Tao Chao:
EFP: Efficient Frontier-Based Autonomous UAV Exploration Strategy for Unknown Environments. IEEE Robotics Autom. Lett. 9(3): 2941-2948 (2024) - [j9]Weibo Sun, Ping Ma, Songyan Wang, Tao Chao:
Analytical Solutions for Hypersonic Glide Trajectory Based on Altitude-Velocity Profile. IEEE Trans. Aerosp. Electron. Syst. 60(5): 7423-7436 (2024) - 2022
- [j8]Ruiye Jiang, Rajan Shankaran, Songyan Wang, Tao Chao:
A proportional, integral and derivative differential evolution algorithm for global optimization. Expert Syst. Appl. 206: 117669 (2022) - [c5]Zhihua Zhu, Songyan Wang, Xiaomei Fan:
A Novel Latch-Up-Immune DDSCR Used for 12 V Applications. IRPS 2022: 15-1 - 2021
- [j7]Songyan Wang, Jilai Yu, Aoife M. Foley, Wei Zhang:
Transient Energy of an Individual Machine PART I: Stability Characterization. IEEE Access 9: 44797-44812 (2021) - [j6]Songyan Wang, Jilai Yu, Aoife M. Foley, Wei Zhang:
Transient Energy of an Individual Machine PART II: Potential Energy Surface. IEEE Access 9: 60223-60243 (2021) - [j5]Songyan Wang, Jilai Yu, Aoife M. Foley:
Transient Energy of an Individual Machine PART III: Newtonian Energy Conversion. IEEE Access 9: 110236-110254 (2021) - [c4]Songyan Wang, Xiaomei Fan, Zhihua Zhu, Yingtao Zhang, Ruike Chen, Juin Jei Liou:
A LVTSCR-Based Compact Structure for Latch-up Immune. ASICON 2021: 1-4 - [i7]Songyan Wang, Jilai Yu, Aoife Foley, Jingrui Zhang:
Newtonian Mechanics Based Transient Stability PART I: Machine Paradigms. CoRR abs/2110.10413 (2021) - [i6]Songyan Wang, Jilai Yu, Aoife Foley, Jingrui Zhang:
Newtonian Mechanics Based Transient Stability PART II: Individual Machine. CoRR abs/2110.11018 (2021) - [i5]Songyan Wang, Jilai Yu, Aoife Foley, Jingrui Zhang:
Newtonian Mechanics Based Transient Stability PART III: Superimposed Machine. CoRR abs/2110.12180 (2021) - [i4]Songyan Wang, Jilai Yu, Aoife Foley, Jingrui Zhang:
Newtonian Mechanics Based Transient Stability PART IV: Equivalent Machine. CoRR abs/2110.13366 (2021) - [i3]Songyan Wang, Jilai Yu, Aoife Foley, Jingrui Zhang:
Newtonian Mechanics Based Transient Stability PART V: Inner-group Machine. CoRR abs/2110.14123 (2021) - [i2]Songyan Wang, Jilai Yu, Aoife Foley, Jingrui Zhang:
Newtonian Mechanics Based Transient Stability PART VI: Machine Transformation. CoRR abs/2110.15491 (2021)
2010 – 2019
- 2019
- [j4]Yuxiao Wang, Ming Yang, Songyan Wang, Tao Chao:
Dynamic Sliding-Mode Control Scheme for Hypersonic Vehicles Considering Nonminimum Phase Characteristics and Performance Recovery. IEEE Access 7: 68106-68118 (2019) - [j3]Songyan Wang, Jilai Yu, Wei Zhang:
Transient Stability Assessment Using Individual Machine Equal Area Criterion PART III: Reference Machine. IEEE Access 7: 80174-80193 (2019) - [c3]Shenming Quan, Tao Chao, Songyan Wang, Ming Yang:
Improved Optimal Terminal Guidance Law Based on Virtual Expected Terminal Impact Angle. CRC 2019: 12-16 - 2018
- [j2]Songyan Wang, Jilai Yu, Wei Zhang:
Transient Stability Assessment Using Individual Machine Equal Area Criterion Part II: Stability Margin. IEEE Access 6: 38693-38705 (2018) - [j1]Songyan Wang, Jilai Yu, Wei Zhang:
Transient Stability Assessment Using Individual Machine Equal Area Criterion PART I: Unity Principle. IEEE Access 6: 77065-77076 (2018) - [c2]Ruiye Jiang, Tao Chao, Songyan Wang, Ming Yang:
Order whale optimization algorithm in rendezvous orbit design. ICACI 2018: 97-102 - 2017
- [c1]Shenming Quan, Tao Chao, Songyan Wang, Ming Yang:
Attitude control law for reentry vehicle based on extended state observer. ASCC 2017: 531-536 - [i1]Songyan Wang, Jilai Yu, Wei Zhang:
Transient Stability Assessment Using Individual Machine Equal Area Criterion Part I: Unity Principle. CoRR abs/1712.00879 (2017)
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last updated on 2024-11-07 20:31 CET by the dblp team
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