Affiliation:
1. State Grid Sichuan Electric Power Company, Chengdu 610041, China
2. Tsinghua Sichuan Energy Internet Research Institute, Chengdu 610213, China
Abstract
The study of dispatching methods for large-scale interruptible loads and electric vehicle clusters is of great significance as an optional method to alleviate the problem of overload in interface power flow. In this paper, the distribution model and transfer capacity of large-scale interruptible load and electric vehicle in two dimensions of time and space were firstly introduced. Then, a large-scale interruptible load and electric vehicle dispatching model considering transmission interface power flow balance was established. Finally, a case study was carried out with the city power grid as the research object. Studies show that by dispatching large-scale interruptible load and electric vehicle, the overload rate of interface power flow can be reduced by 12–17%, while the proportion of clean energy generation increased by 4.19%. Large-scale interruptible load and electric vehicles are quite different in terms of the role they play in grid regulation. The regulation cost of electric vehicles is higher than that of large-scale interruptible load, but it also has the advantages of promoting the consumption of clean energy and improving the overall operating economy. Which type of resource should be given priority is based on the actual state of the grid. In addition, the cost of electricity has a significant impact on the load response behavior of electric vehicles. It should be determined according to various factors, such as interface power flow control requirements, regulation costs, and power grid operation costs.
Funder
Science and Technology Plan of Sichuan Province, China
State Grid Science and Technology Project
Subject
Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction
Reference39 articles.
1. Impact of cascading failure based on line vulnerability index on power grids;Li;Energy Syst.,2022
2. A method of identifying a transmission section based on topology aggregation and the transmission limit of the section;Zhang;Power Syst. Prot. Control,2022
3. Modern voltage stability index for prediction of voltage collapse and estimation of maximum load-ability for weak buses and critical lines identification;Mokred;Int. J. Electr. Power Energy Syst.,2023
4. Wang, Z., Zhou, Y., Guo, Q., and Sun, H. (2023). The Total Transfer Capability Assessment of Transmission Interfaces Combining Causal Inference and Multi-task Learning. IEEE Trans. Power Syst., 1–13. early access.
5. Naderi, E., Mirzaei, L., Pourakbari-Kasmaei, M., Cerna, F.V., and Lehtonen, M. (2023). Optimization of active power dispatch considering unified power flow controller: Application of evolutionary algorithms in a fuzzy framework. Evol. Intell., ahead of print.
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