학술논문

Research on Cooperative Scheduling Model of Wind-Solar-Thermal Virtual Power Plant Based on Thermal Load Demand Response
Document Type
Conference
Source
2019 IEEE Innovative Smart Grid Technologies - Asia (ISGT Asia) Innovative Smart Grid Technologies - Asia (ISGT Asia), 2019 IEEE. :3810-3814 May, 2019
Subject
Communication, Networking and Broadcast Technologies
Components, Circuits, Devices and Systems
Computing and Processing
Engineered Materials, Dielectrics and Plasmas
Fields, Waves and Electromagnetics
Power, Energy and Industry Applications
Robotics and Control Systems
Signal Processing and Analysis
Transportation
Power generation
Power grids
Companies
Uncertainty
Renewable energy sources
Power supplies
Dispatching
virtual power plant
cogeneration
game theory
cooperative scheduling
Language
ISSN
2378-8542
Abstract
The cogeneration power plant is developed according to the needs of winter heating in the northern region, and gradually develop to non-fossil energy biomass power plant in line with the national green development concept. During the heating period, a large number of cogeneration power plants operate under the mode of "heat-fixing", which results in insufficient peaking capacity of the power grid, and the phenomenon of abandoning wind and light is widespread [1] . In view of the above problems, this paper takes the wind farm, distributed photovoltaic power station and cogeneration power plant in a certain area of Heilongjiang Province as the research object, analyzes the feasibility of cooperation between power grid companies and virtual power plants. Based on the scene analysis method to deal with the uncertainty of wind and light output, three models of virtual power plant single dispatch, virtual power plant coordinated dispatch and virtual power plant-grid company joint optimization scheduling were constructed, and the cooperative space and benefit allocation scheme of virtual power plant-grid company based on cooperative game theory was established. Through the analysis of examples, the rationality and effectiveness of the established model and the economic advantages of the virtual power plant as a whole benefit are verified.