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能源系统低碳转型背景下的混合电力市场体系结构与设计

荆朝霞 李煜鹏 赵昱宣 刘肇熙

电力系统自动化2024,Vol.48Issue(11):24-36,13.
电力系统自动化2024,Vol.48Issue(11):24-36,13.DOI:10.7500/AEPS20231030008

能源系统低碳转型背景下的混合电力市场体系结构与设计

Architecture and Design of Hybrid Electricity Market System Under Background of Low-carbon Transformation of Energy System

荆朝霞 1李煜鹏 1赵昱宣 1刘肇熙1

作者信息

  • 1. 华南理工大学电力学院,广东省广州市 510640
  • 折叠

摘要

Abstract

In the context of the low-carbon transformation of the energy system,the operation of electricity markets in various countries faces multiple policy boundaries.To solve the problem of how governments should intervene in markets to achieve multiple objectives,further research on hybrid electricity markets is conducted based on the two-stage market competition theory,combined with the driving relationship between government and market in the electricity market system.First,the equilibrium principles and challenges of traditional electricity markets are deeply analyzed,and the reasons for government intervention in electricity markets are classified and discussed,including externalities,imperfection in the market system,imperfection in market mechanisms,and imperfection in market competition.Then,the significance and challenges of the basic structure of hybrid electricity markets based on the two-stage market competition theory are discussed.On this basis,a two-dimensional four-module hybrid electricity market extension structure is proposed,which includes short-term and long-term,market and government.And the key steps and contents of its design are analyzed.Finally,the design of government intervention methods in hybrid electricity markets is discussed based on the problems existing in China's electricity market construction.

关键词

低碳转型/能源系统/电力市场/政府干预/市场失灵/政府授权合约

Key words

low-carbon transformation/energy system/electricity market/government intervention/market failure/government-authorized contract

引用本文复制引用

荆朝霞,李煜鹏,赵昱宣,刘肇熙..能源系统低碳转型背景下的混合电力市场体系结构与设计[J].电力系统自动化,2024,48(11):24-36,13.

基金项目

广东省基础与应用基础研究基金资助项目(2023A1515011171). This work is supported by Basic and Applied Basic Research Foundation of Guangdong Province of China(No.2023A1515011171). (2023A1515011171)

电力系统自动化

OA北大核心CSTPCD

1000-1026

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