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考虑需求侧与碳捕集的电力系统低碳调度优化研究

路小娟 刘丹 范多进 张志勇

热力发电2024,Vol.53Issue(11):1-9,9.
热力发电2024,Vol.53Issue(11):1-9,9.DOI:10.19666/j.rlfd.202403048

考虑需求侧与碳捕集的电力系统低碳调度优化研究

Optimization of low-carbon scheduling of power system considering demand side and carbon capture

路小娟 1刘丹 1范多进 2张志勇2

作者信息

  • 1. 兰州交通大学自动化与电气工程学院,甘肃 兰州 730000
  • 2. 兰州交通大学研究院光热储能综合能源系统工程研究中心,甘肃 兰州 730000
  • 折叠

摘要

Abstract

In order to enhance the wind power consumption rate,achieve the goal of energy and power carbon peak and carbon neutral,with the goal of the lowest comprehensive cost of the power system,a new energy power system low carbon economic optimization method is proposed to establish the source and load side of the planning model.Firstly,on the source side of thermal power units,low-carbon transformation is performed,and a solution memory and flue gas bypass system is set up to make the unit become a liquid storage carbon capture unit,and dispatchable resources of photovoltaic power plant(concentrating solar power,CSP)and storage battery is introduced to coordinated with wind power.Then,on the load side,the price and incentive-type demand response resources are used for peak shaving and valley filling,and adjusting the users'power consumption behaviors and power consumption.Finally,four cases are verified,and the results show that,the decarbonization of the power system from both the source and load sides can help promote wind power consumption,increase the share of renewable energy generation,enhance the low-carbon performance of the system,and save costs.

关键词

需求响应/储液式碳捕集/可再生能源/低碳经济调度

Key words

demand response/liquid storage carbon capture/renewable energy/low carbon economy dispatch

引用本文复制引用

路小娟,刘丹,范多进,张志勇..考虑需求侧与碳捕集的电力系统低碳调度优化研究[J].热力发电,2024,53(11):1-9,9.

基金项目

甘肃省高校产业支撑计划项目(2022CYZC-34) (2022CYZC-34)

国家自然科学基金项目(52266012) (52266012)

甘肃省科技重大专项(22ZD6GA063,20ZD7GF011) (22ZD6GA063,20ZD7GF011)

酒泉市科技计划项目(2023CA3058) Gansu Province University Industry Support Program Project(2022CYZC-34) (2023CA3058)

National Natural Science Foundation of China(52266012) (52266012)

Gansu Province Science and Technology Major Project(22ZD6GA063,20ZD7GF011) (22ZD6GA063,20ZD7GF011)

Jiuquan Science and Technology Program(2023CA3058) (2023CA3058)

热力发电

OA北大核心CSTPCD

1002-3364

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