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Hongjun Gao
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2020 – today
- 2024
- [j31]Shiduo Qu, Hongjun Gao:
The high-order approximation of SPDEs with multiplicative noise via amplitude equations. Commun. Nonlinear Sci. Numer. Simul. 132: 107937 (2024) - [j30]Yong Chen, Jinqiao Duan, Hongjun Gao, Xingyu Guo:
Modulation Analysis of the Stochastic Camassa-Holm Equation with Pure Jump Noise. J. Nonlinear Sci. 34(3): 58 (2024) - [j29]Renjun Wang, Haifeng Qiu, Hongjun Gao, Chaojie Li, Zhao Yang Dong, Junyong Liu:
Adaptive Horizontal Federated Learning-Based Demand Response Baseline Load Estimation. IEEE Trans. Smart Grid 15(2): 1659-1669 (2024) - 2023
- [j28]Shanqi Liu, Hongjun Gao, Huijie Qiao, Nan Lu:
The Onsager-Machlup action functional for McKean-Vlasov stochastic differential equations. Commun. Nonlinear Sci. Numer. Simul. 121: 107203 (2023) - [j27]Haifeng Qiu, Hoay Beng Gooi, Hongjun Gao, Veerapandiyan Veerasamy, Yuanzheng Li:
Cooperative Power Bidding of Smart Community Grids With an Aggregator-Prosumer-Based Hierarchical Framework. IEEE Trans. Smart Grid 14(4): 3032-3045 (2023) - [i2]Wenwen Zhang, Gao Qiu, Hongjun Gao, Tingjian Liu, Junyong Liu, Yaping Li, Shengchun Yang, Jiahao Yan, Wenbo Mao:
Two stage Robust Nash Bargaining based Benefit Sharing between Electric and HCNG Distribution Networks Bridged with SOFC. CoRR abs/2310.05999 (2023) - 2022
- [j26]Lili Fan, Hongjun Gao, Haochen Li:
On the Geophysical Green-Naghdi System. J. Nonlinear Sci. 32(2): 21 (2022) - [j25]Hongjun Gao, Xiaodong Lyu, Shuaijia He, Lingfeng Wang, Cheng Wang, Junyong Liu:
Integrated Planning of Cyber-Physical Active Distribution System Considering Multidimensional Uncertainties. IEEE Trans. Smart Grid 13(4): 3145-3159 (2022) - [j24]Hongjun Gao, Wang Ma, Shuaijia He, Lingfeng Wang, Junyong Liu:
Time-Segmented Multi-Level Reconfiguration in Distribution Network: A Novel Cloud-Edge Collaboration Framework. IEEE Trans. Smart Grid 13(4): 3319-3322 (2022) - 2021
- [j23]Hongjun Gao, María J. Garrido-Atienza, Anhui Gu, Kening Lu, Björn Schmalfuß:
Rough Path Theory to Approximate Random Dynamical Systems. SIAM J. Appl. Dyn. Syst. 20(2): 997-1021 (2021) - [j22]Hongjun Gao, Jiayi Wang, Youbo Liu, Lingfeng Wang, Junyong Liu:
An Improved ADMM-Based Distributed Optimal Operation Model of AC/DC Hybrid Distribution Network Considering Wind Power Uncertainties. IEEE Syst. J. 15(2): 2201-2211 (2021) - [j21]Zao Tang, Yikui Liu, Lei Wu, Junyong Liu, Hongjun Gao:
Reserve Model of Energy Storage in Day-Ahead Joint Energy and Reserve Markets: A Stochastic UC Solution. IEEE Trans. Smart Grid 12(1): 372-382 (2021) - 2020
- [i1]Gao Qiu, Youbo Liu, Junyong Liu, Junbo Zhao, Lingfeng Wang, Tingjian Liu, Hongjun Gao:
Analytic Deep Learning-based Surrogate Model for Operational Planning with Dynamic TTC Constraints. CoRR abs/2006.16186 (2020)
2010 – 2019
- 2019
- [j20]Xiancheng Gao, Hongjun Gao:
Existence and uniqueness of weak solutions to stochastic 3D Navier-Stokes equations with delays. Appl. Math. Lett. 95: 158-164 (2019) - [j19]Guangying Lv, Jinqiao Duan, Hongjun Gao:
Stochastic nonlocal conservation laws on whole space. Comput. Math. Appl. 77(7): 1945-1962 (2019) - 2018
- [j18]Xiancheng Gao, Hongjun Gao:
The local exponential stability of evolution equation driven by Hölder-continuous paths. Appl. Math. Lett. 84: 84-89 (2018) - [j17]Hongjun Gao, Junyong Liu, Lingfeng Wang:
Robust Coordinated Optimization of Active and Reactive Power in Active Distribution Systems. IEEE Trans. Smart Grid 9(5): 4436-4447 (2018) - 2017
- [j16]Hui Liu, Hongjun Gao:
Decay of solutions for the 3D Navier-Stokes equations with damping. Appl. Math. Lett. 68: 48-54 (2017) - [j15]Robin Ming Chen, Lili Fan, Hongjun Gao, Yue Liu:
Breaking Waves And Solitary Waves To The Rotation-Two-Component Camassa-Holm System. SIAM J. Math. Anal. 49(5): 3573-3602 (2017) - 2015
- [j14]Jinchun He, Jinqiao Duan, Hongjun Gao:
A nonlocal Fokker-Planck equation for non-Gaussian stochastic dynamical systems. Appl. Math. Lett. 49: 1-6 (2015) - 2014
- [j13]Hongjun Gao, María J. Garrido-Atienza, Björn Schmalfuss:
Random Attractors for Stochastic Evolution Equations Driven by Fractional Brownian Motion. SIAM J. Math. Anal. 46(4): 2281-2309 (2014) - 2013
- [j12]Ningjie Wu, Jiangxing Chen, Hongjun Gao, Heping Ying:
Design and application of feedback-sustained target waves in excitable medium. Commun. Nonlinear Sci. Numer. Simul. 18(1): 75-80 (2013) - [j11]Lei Shi, Hongjun Gao:
Bifurcation Analysis of an amplitude equation. Int. J. Bifurc. Chaos 23(5) (2013) - [j10]Yanwu Han, Fei Guo, Hongjun Gao:
On Solitary Waves and Wave-Breaking Phenomena for a Generalized Two-Component Integrable Dullin-Gottwald-Holm System. J. Nonlinear Sci. 23(4): 617-656 (2013) - 2012
- [j9]Fei Guo, Hongjun Gao, Yue Liu:
On the wave-breaking phenomena for the two-component Dullin-Gottwald-Holm system. J. Lond. Math. Soc. 86(3): 810-834 (2012) - 2010
- [j8]Hongjun Gao, Qingkun Xiao:
Bifurcation Analysis of the 1D and 2D Generalized swift-Hohenberg equation. Int. J. Bifurc. Chaos 20(3): 619-643 (2010)
2000 – 2009
- 2009
- [j7]Qingkun Xiao, Hongjun Gao:
Bifurcation Analysis of the swift-Hohenberg equation with quintic Nonlinearity. Int. J. Bifurc. Chaos 19(9): 2927-2937 (2009) - [c1]Hongjun Gao, Yunfeng Song, Wei Liao:
Fuzzy Comprehensive Evaluation Model on University Teaching Quality. BIFE 2009: 190-193 - 2008
- [j6]Linda Angela Zotti, Gilberto Teobaldi, Krisztian Palotás, Wei Ji, Hongjun Gao, Werner A. Hofer:
Adsorption of benzene, fluorobenzene and meta-di-fluorobenzene on Cu(110): A computational study. J. Comput. Chem. 29(10): 1589-1595 (2008) - 2007
- [j5]Hongjun Gao, Charles Bu:
Neumann inhomogeneous boundary value problem for the n+1 complex Ginzburg-Landau equation. Appl. Math. Comput. 188(1): 394-398 (2007) - 2004
- [j4]Charles Bu, Hongjun Gao, Kimitoshi Tsutaya:
The generalized Ginzburg-Landau equation: posed in a quarter plane. Appl. Math. Comput. 159(3): 667-674 (2004) - 2003
- [j3]Hongjun Gao, Xiaohua Gu, Charles Bu:
A Neumann boundary value problem for a generalized Ginzburg-Landau equation. Appl. Math. Comput. 134(2-3): 553-560 (2003) - [j2]Hongjun Gao, Charles Bu:
Almost periodic solution for a model of tumor growth. Appl. Math. Comput. 140(1): 127-133 (2003) - [j1]Hongjun Gao, Charles Bu:
A Dirichlet boundary value problem for a generalized Ginzburg-Landau equation. Appl. Math. Lett. 16(2): 179-184 (2003)
Coauthor Index
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last updated on 2024-10-07 22:15 CEST by the dblp team
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