Fundings
Research Grants
| Project Title | My Role | Funding Body | Budget (RMB) | Period |
|---|---|---|---|---|
| Reservoir Optimization Algorithms | PI | Shenzhen Water Affairs Bureau | 1,200,000 | 2025.11 - 2026.11 |
| MILP Solver Development | Researcher | Shenzhen Big-Data Institute | 600,000 | 2025.06 - 2026.12 |
| Large-Scale MIP Algorithms | Researcher | National Key R&D Program of China | 5,000,000 | 2023.01 - 2028.01 |
| Robust Optimization Methods under Decision-dependent Uncertainty | Key Participant | National Natural Science Foundation of China | 300,000 | 2026.01 - 2029.12 |
Total Funding
Total Budget: 7,100,000 RMB (~990,000 USD)
Project Details
Reservoir Optimization Algorithms (2025-2026)
- Role: Principal Investigator (PI)
- Funding Agency: Shenzhen Water Affairs Bureau
- Budget: 1,200,000 RMB
- Duration: November 2025 - November 2026
- Description: Development of advanced optimization algorithms for reservoir management and water resource allocation.
MILP Solver Development (2025-2026)
- Role: Researcher
- Funding Agency: Shenzhen Research Institute of Big Data
- Budget: 600,000 RMB
- Duration: June 2025 - December 2026
- Description: Research and development of Mixed-Integer Linear Programming (MILP) solvers for large-scale optimization problems.
Large-Scale MIP Algorithms (2023-2028)
- Role: Researcher
- Funding Agency: National Key R&D Program of China
- Budget: 5,000,000 RMB
- Duration: January 2023 - January 2028
- Description: Development of algorithms for solving large-scale Mixed-Integer Programming problems with applications in logistics, transportation, and supply chain management.
Robust Optimization Methods under Decision-dependent Uncertainty (2026-2029)
- Role: Key Participant
- Funding Agency: National Natural Science Foundation of China (NSFC)
- Budget: 300,000 RMB
- Duration: January 2026 - December 2029
- Description: Research on robust optimization methodologies for problems where uncertainty is influenced by decision-making, with applications in operations research and stochastic programming.