Research Review on Multi-Port Energy Routers Adapted to Renewable Energy Access
-
Published:2024-04-14
Issue:8
Volume:13
Page:1493
-
ISSN:2079-9292
-
Container-title:Electronics
-
language:en
-
Short-container-title:Electronics
Author:
Zhou Jinghua1, Wang Jiangbo1
Affiliation:
1. School of Energy Storage Science and Engineering, North China University of Technology; Beijing Laboratory of New Energy Storage Technology, Beijing Municipal Education Commission, Beijing 100144, China
Abstract
With the continuous development of renewable energy technologies, both domestically and internationally, the focus of energy research has gradually shifted towards renewable energy directions such as distributed photovoltaics and wind power. The penetration rate of renewable energy generation is constantly increasing, at the same time, the elements in the grid are becoming increasingly complex, and large-scale energy storage, as well as a variety of electricity loads such as electric vehicle charging piles and data centers are gradually appearing. Therefore, traditional distribution methods of the power grid are difficult to ensure the stable operation of the power system and cannot achieve efficient integration of renewable energy. Consequently, some scholars have proposed the concept of an energy internet. Compared to traditional power grids, the energy internet employs more comprehensive power electronics and communication technologies, enabling the interconnection of various new and traditional energy sources, and effectively integrating renewable energy. As the core device in the energy internet, the energy router plays a role in energy transformation and distribution, facilitating multi-information interconnection and multi-energy exchange within the energy internet. At the level of distribution network, the energy router can realize the efficient access of various forms of energy and the flexible control and management, which is of great significance for the optimal operation of distribution network. Against this backdrop, this paper reviews the development and current research status of energy routers, systematically analyzes the typical topologies and related control technologies of multi-port energy routers and summarizes and forecasts key issues and future development trends, aiming to provide thoughts and reference for subsequent related research.
Funder
National Key R&D Program of China
Reference54 articles.
1. Nagi, F., Azwin, A., Boopalan, N., Ramasamy, A.K., Marsadek, M., and Ahmed, S.K. (2022). Comparison of Grid Reactive Voltage Regulation with Reconfiguration Network for Electric Vehicle Penetration. Electronics, 11. 2. Dolado, J., Rodríguez Amenedo, J.L., Arnaltes, S., and Eloy-Garcia, J. (2022). Improving the Inertial Response of a Grid-Forming Voltage Source Converter. Electronics, 11. 3. Method for Improving the Balance Ability of Distribution Networks through SourceLoad-storage Collaborative Optimization;Gu;Proc. CSEE,2024 4. Cheng, L., Li, G.Q., Wang, Z.H., Wang, C., and Liu, Y.N. (2024). Operation regulation for high proportion of distributed renewable energy integrated hybrid AC&DC distribution network: Scientific issues and technology framework. Electr. Power Autom. Equip., in press. 5. Wang, D., Wu, X., Zhao, L., Shi, Q., Kong, W., and Dai, H. (2023, January 21–23). Research on DC Microgrids in the Context of the Rural Energy Internet. Proceedings of the 2023 6th Asia Conference on Energy and Electrical Engineering (ACEEE), Chengdu, China.
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|