Two-tier coordinated optimal scheduling of wind/PV/hydropower and storage systems based on generative adversarial network scene generation

Author:

Cai Changchun,Li Yuanjia,He Yaoyao,Guo Lei

Abstract

In order to achieve the economic consumption of renewable energy in a multi-energy power system including wind/PV/hydropower and energy storage, a two-tier coordinated optimal scheduling method based on generative adversarial network (GAN) scenario generation is proposed in this paper. First, an upper-tier optimization model for the operation of the load and storage system is established to achieve the objective of minimizing the load fluctuation and the cost of energy storage plants. Furthermore, a lower-tier optimization model to minimize the system operation cost and tide risk is established for the optimization operation of renewable energy generation. Second, an improved generative adversarial network is proposed to generate the operation scenes for evaluating the uncertainty characteristics of the wind and photovoltaic (PV) generation. Then, an improved coati optimization algorithm (COA) is used to solve the proposed optimization problem. Finally, the IEEE 30-bus system is selected as the example system for verifying the proposed method. The simulation results corroborate the validity and feasibility of the proposed method.

Publisher

Frontiers Media SA

Subject

Economics and Econometrics,Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference21 articles.

1. Coordinative optimization of hydro-photovoltaic-wind-battery complementary power stations;An;CSEE J. Power Energy Syst.,2020

2. Dispatching strategy of joint wind, photovoltaic, thermal and energy storage considering utilization ratio of new energy;Gejirifu

3. Scenario generation of wind power based on longitudinal-horizontal clustering strategy;Guan

4. Multi-objective optimization of run-of-river small hydro-PV hybrid power systems;Hounnou

5. Optimal dispatch model of wind power accommodation in combined heat and power system based on unit commitment;Hu

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