高树华

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研究员
硕士生导师
- 性别:男
- 毕业院校:新加坡国立大学
- 学历:博士研究生毕业
- 学位:博士生
- 在职信息:在职
- 所在单位:控制科学与工程学院
- 入职时间: 2022-03-25
- 所属院系:
控制科学与工程学院
- 学科:控制理论与控制工程
控制科学与工程
- 办公地点:山东大学千佛山校区
- 电子邮箱:ba9518e5959815b494dfa0603c1b7c601e5179da0a71a735a93f33d816f7594f33d571c50191eeb18451ce45f8a8bab056ef5aa2a9e1a139661a8ad0abf59806984e00ceb6eca916398292c3b6fa01150fc832ea44ccd331d5f87c9f0ca545129e944756fba884137c0dcece67dfbab453bb76d796bf8ee09b1b57b7dcc68cc8
访问量:
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[1]
高树华.
Time-Optimal Stabilization of Switched Boolean Control Networks under Constraints: an Efficient Graphical Approach.
2024 China Automation Congress, CAC 2024,
3599-3605,
2025.
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[2]
高树华.
Multi-Agent Imitation Learning Based Energy Management of a Microgrid With Hybrid Energy Storage and Real-Time Pricing.
IEEE Internet of Things Journal,
2025.
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[3]
王正方.
A Semisupervised Deep Learning Method for Ground Penetrating Radar Data Inversion and Concrete Subsurface Defect Imaging.
IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING,
63,
2025.
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[4]
李亚昆.
A Graphical Approach for Robust Set Stabilization of Boolean Control Networks with Lowest Time Complexity.
IEEE Transactions on Network Science and Engineering,
2025.
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[5]
高树华.
Short-term residential load forecasting via transfer learning and multi-attention fusion for EVs coordinated charging.
INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS,
1,
2024.
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[6]
高树华.
Robust Set Stabilization of Boolean Control Networks: an Efficient Approach based on Reverse Set Propagation.
62nd IEEE Conference on Decision and Control, CDC 2023,
8343-8348,
2024.
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[7]
Zhao, Yunyi.
Online Cooperative Optimal Power Scheduling of Multiple Microgrids via Hierarchical Imitation Learning.
18th IEEE International Conference on Control and Automation, ICCA 2024,
30-35,
2024.
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[8]
高树华.
Dam Seepage Defect Area Estimation Method Based on UAV 3D Scene Reconstruction.
Proceedings of 2024 3rd International Symposium on Intelligent Unmanned Systems and Artificial Intelligence, SIUSAI 2024,
106-112,
2024.
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[9]
高树华.
On Solar Photovoltaic Parameter Estimation: Global Optimality Analysis and a Simple Efficient Differential Evolution Method.
62nd IEEE Conference on Decision and Control, CDC 2023,
2563-2569,
2024.
-
[10]
Huang, Zhenhao.
Economical Electric Vehicle Charging Scheduling via Deep Imitation Learning.
IEEE Transactions on Intelligent Transportation Systems,
2024.
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[11]
Zhang, Yudi.
Multistep Model Predictive Torque Control for Induction Motor via Imitation Learning.
49th Annual Conference of the IEEE Industrial Electronics Society, IECON 2023,
2023.
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[12]
张德祯.
LogicGep: Boolean networks inference using symbolic regression from time-series transcriptomic profiling data.
Briefings in Bioinformatics,
25,
2024.
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[13]
高树华.
Economic Cost and Carbon Emission Reduction of Microgrid via Bi-Objective Optimization.
43rd Chinese Control Conference, CCC 2024,
6307-6314,
2024.
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[14]
高树华.
Minimum-Time Control of Boolean Control Networks: A Fast Graphical Approach.
IEEE Transactions on Circuits and Systems II: Express Briefs,
1-1,
2023.
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[15]
高树华.
A Faster Approach for Robust Set Stabilization of Boolean Control Networks.
2023 the 42nd Chinese Control Conference,
2023.
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[16]
高树华.
A Hybrid Approach for Home Energy Management With Imitation Learning and Online Optimization.
IEEE TRANSACTIONS ON INDUSTRIAL INFORMATICS,
2023.
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[17]
高树华.
Minimum-Time Control of Boolean Control Networks: A Fast Graphical Approach.
IEEE Transactions on Circuits and Systems II: Express Briefs,
2023.
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[18]
Shuhua Gao , Cheng Xiang , Ming Yu , Kuan Tak Tan and Tong Heng Lee.
Online Optimal Power Scheduling of a Microgrid via Imitation Learning.
IEEE Transactions on Smart Grid,
2021.
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[19]
Shuhua Gao , Cheng Xiang and Tong Heng Lee.
Highly efficient photovoltaic parameter estimation using parallel particle swarm optimization on a GPU.
2021 IEEE 30th International Symposium on Industrial Electronics (ISIE),
2021.
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[20]
Shuhua Gao , Changkai Sun , Cheng Xiang , Kairong Qin and Tong Heng Lee.
Finite-Horizon Optimal Control of Boolean Control Networks: A Unified Graph-Theoretical Approach.
IEEE Transactions on Neural Networks and Learning Systems,
2020.