考虑电网增强技术的电力-天然气一体化系统低碳经济调度 IGDT 随机模型

IF 2 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Amir Talebi, Masoud Agabalaye-Rahvar, Behnam Mohammadi-Ivatloo, Kazem Zare, Amjad Anvari-Moghaddam
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引用次数: 0

摘要

利用风能和灵活的资源,如电制气技术、燃气发电机、需求响应(DR)计划、电网增强技术以及碳捕获和储存,可以帮助实现综合电-气系统(iegs)的低碳运行。据此,本文提出了IEGS低碳经济调度模型,该模型考虑燃气发电机组、DR和燃气发电机组,实现IEGS系统的经济环保运行。创新地将柔性交流输电系统装置作为电网增强技术之一纳入电力系统,以保证风电在整个电力系统中的可输送性。此外,还利用配备储氢装置的电制气,吸收多余的风力发电产生CH4。另一方面,为了捕捉天然气网络的固有灵活性,管道的储气特性通过线包建模来显示。为了管理风电和DR计划相关的不确定性,所提出的模型被表示为一个igdt随机问题。为了提高计算效率,本文采用混合整数线性规划框架。不同的案例研究是在一个集成测试系统上进行的。数值模拟结果表明,该模型可使总成本、碳排放和弃风量分别降低29%、16.4%和100%。由此可见,所提出的低碳ED模式既环保又具有经济效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

An IGDT-stochastic model for low-carbon economic dispatch of integrated electricity-natural gas systems considering grid-enhancing technologies

An IGDT-stochastic model for low-carbon economic dispatch of integrated electricity-natural gas systems considering grid-enhancing technologies

Utilizing wind power alongside flexible resources such as power-to-gas technology, gas-fuel generator, demand response (DR) program, grid-enhancing technologies, and carbon capture and storage can help to low carbon operation of integrated electricity-gas systems (IEGSs). Accordingly, this paper proposes a low-carbon economic dispatch model for the IEGS, in which gas-fuel generators, DR, and gas-fuel generator are considered to realize the economic and environmentally friendly operation of these systems. Also, the flexible AC transmission system device as one of the grid-enhancing technologies is innovatively included in IEGSs to guarantee that wind power is deliverable entire the electricity system. Besides, power-to-gas equipped with hydrogen storage is used to absorb the excess wind power to produce CH4. On the other hand, to capture the inherent flexibility of the gas network, the gas-storing characteristic of pipelines is shown by line pack modelling. To manage uncertainties associated with wind power and DR program, the proposed model is formulated as an IGDT-stochastic problem. For efficient computation purposes, the present work follows the mixed-integer linear programming framework. Different case studies are performed on an integrated test system. Numerical simulation results show that the proposed model leads to reducing the total cost, carbon emissions, and wind curtailment by 29%, 16.4%, and 100%, respectively. It can be seen that the proposed low-carbon ED model is environmentally friendly and has economic benefits.

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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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