Return
Distributed stochastic model predictive control for energy dispatch with distributionally robust optimization
DOI:10.1007/s10483-025-3215-6.png)
Abstract
En 中文
A chance-constrained energy dispatch model based on the distributed stochastic model predictive control (DSMPC) approach for an islanded multi-microgrid system is proposed. An ambiguity set considering the inherent uncertainties of renewable energy sources (RESs) is constructed without requiring the full distribution knowledge of the uncertainties. The power balance chance constraint is reformulated within the framework of the distributionally robust optimization (DRO) approach. With the exchange of information and energy flow, each microgrid can achieve its local supply-demand balance. Furthermore, the closed-loop stability and recursive feasibility of the proposed algorithm are proved. The comparative results with other DSMPC methods show that a trade-off between robustness and economy can be achieved.
Keywords:
distributed stochastic model predictive control (DSMPC)
distributionally robust optimization (DRO)
islanded multi-microgrid
energy dispatch strategy
TM73
Journal
IF:
4.8
Papers:
260
Citations:
4.5K
Organization
Cited Papers
Distributed MPC-based energy scheduling for islanded multi-microgrid considering battery degradation and cyclic life deterioration
APPLIED ENERGY
IF11
Distributed EMPC of multiple microgrids for coordinated stochastic energy management
APPLIED ENERGY
IF11

