Large Energy Base Multi-objective Planning Optimization Model

Qu Kaibo, Su Ya-Heng, Wei Li, Xin Zhang, Xu Wang, 好男 唐沢 · 2024

Under the previous development situation of the large energy base, it is necessary to take into account the economic, high efficiency, environmental protection and reliability operation of the system, and optimize the provisioning capacity allocation of the Large energy base. It can help to improve the economic performance of system operation during the life cycle, maximize the benefits of each type of equipment, and achieve the goal benefits of multiple goals. For this reason, this paper aims to construct an optimization model of integrated energy system planning on the supply side. The planning optimization method of wind-light-fire reservoir combined system is proposed first. Secondly, from the two aspects of the cost and the economic benefits of the wind-light-fire storage combined system, the economic benefits of the system are analyzed, and the absorption capacity of the new energy source is explored, and the concept of the combined benefit rate of the new energy source is introduced. Construct a new energy source energy dissipation physical model; Finally, the optimization model of system planning is constructed by considering the related factors and taking economic benefits and new energy sources as the optimization objective. The method of particle subgroup is chosen as the model solving method, and the planning optimization process of wind-light-fire storage system is designed.

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