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低碳电力市场运行模式仿真研究

刘贞 施於人 阎建明

电网技术2013,Vol.37Issue(3):604-609,6.
电网技术2013,Vol.37Issue(3):604-609,6.

低碳电力市场运行模式仿真研究

Simulation Study on Operation Mode of Low-Carbon Electricity Market

刘贞 1施於人 1阎建明1

作者信息

  • 1. 重庆理工大学低碳能源研究中心,重庆市巴南区400054
  • 折叠

摘要

Abstract

During marketization reform of power industry,new electricity market modes are usually endowed with the connotation inspiring carbon emission reduction.Based on the research on both conventional electricity market and electricity market complying with carbon emission reduction,a new low-carbon electricity market mode is proposed.In hourly ahead electricity market,generation company (Genco)determines its transaction volumes in the two electricity markets according to its transaction in the last round.When the Genco participates the transaction in conventional electricity market a certain amount of fine is collected,and when the Genco participates the transaction in electricity market complying with carbon emission reduction it is necessary to purchase the right of carbon emission.Utilizing Swarm simulation tool,a simulation platform for low-carbon electricity market model is designed,and it is validated that in the designed low-carbon electricity market model the total carbon emission amount of electric power sector can be effectively controlled by adjusting both the price of certification emission reduction (CER) for fossil energy generation and the total amount of the right of carbon emission in conventional electricity market.

关键词

碳排放/增强式学习算法/低碳电力市场/发电商/竞价行为

Key words

carbon emission/ reinforcement learning algorithm/ low-carbon electricity market/ generation companies/bidding behavior

分类

信息技术与安全科学

引用本文复制引用

刘贞,施於人,阎建明..低碳电力市场运行模式仿真研究[J].电网技术,2013,37(3):604-609,6.

基金项目

国家自然科学基金项目(71073095) (71073095)

教育部人文社会科学基金(10YJC630161). (10YJC630161)

Project Supported by National Natural Science Foundation of China (71073095) (71073095)

Chinese Ministry of Education,Humanities and Social Science Foundation (10YJC630161). (10YJC630161)

电网技术

OA北大核心CSCDCSTPCD

1000-3673

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