虚拟储能系统建模与最优控制策略研究进展

IF 2 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Bowen Zhou, Yichen Jiang, Yanhui Zhang, Guangdi Li, Peng Gu, Boyu Liu
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引用次数: 0

摘要

VES是一种平衡电力系统能量与其他设备或调度策略的方法,特别是在可控负荷方面,由于最终用户电气化。本文总结了VES用户建模的内涵、分类以及典型的建模应用。随后,介绍了电动汽车、建筑、冷库、工业生产和储氢等五种类型的VESs的建模方法、特点和具体运行案例。在此基础上,通过最优控制策略实现了VESS的储能容量规划、能量调度策略和功率控制策略。最后,结合需求响应,讨论了微电网在建模和控制策略方面的发展前景,以提高微电网的经济效益和环境效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Review of Modelling and Optimal Control Strategy for Virtual Energy Storage

Review of Modelling and Optimal Control Strategy for Virtual Energy Storage

VES is a method of balancing the energy of a power system with other equipment or scheduling strategies, particularly with respect to controllable loads, owing to end-user electrification. This paper summarises the connotations, classifications, and typical modelling applications for VES users. Thereafter, the modelling methods, characteristics, and specific operation cases of five types of VESs are introduced, including electric vehicles, buildings, cold storage, industrial production and hydrogen storage. Furthermore, the energy storage capacity planning, energy scheduling strategy, and power control strategy of a VESS are realised through optimal control strategies. Finally, in conjunction with demand response, the development prospects of VES in modelling and control strategies are discussed to improve the economic and environmental benefits of microgrids.

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来源期刊
Iet Generation Transmission & Distribution
Iet Generation Transmission & Distribution 工程技术-工程:电子与电气
CiteScore
6.10
自引率
12.00%
发文量
301
审稿时长
5.4 months
期刊介绍: IET Generation, Transmission & Distribution is intended as a forum for the publication and discussion of current practice and future developments in electric power generation, transmission and distribution. Practical papers in which examples of good present practice can be described and disseminated are particularly sought. Papers of high technical merit relying on mathematical arguments and computation will be considered, but authors are asked to relegate, as far as possible, the details of analysis to an appendix. The scope of IET Generation, Transmission & Distribution includes the following: Design of transmission and distribution systems Operation and control of power generation Power system management, planning and economics Power system operation, protection and control Power system measurement and modelling Computer applications and computational intelligence in power flexible AC or DC transmission systems Special Issues. Current Call for papers: Next Generation of Synchrophasor-based Power System Monitoring, Operation and Control - https://digital-library.theiet.org/files/IET_GTD_CFP_NGSPSMOC.pdf
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