考虑电碳绿证市场耦合的园区综合能源系统日前优化调度  被引量:18

Day-Ahead Optimal Scheduling of Park-Integrated Energy System Considering Electricity-Carbon-Green Certificate Market

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作  者:梁泽琪 周云[1] 冯冬涵[1] 郭灵瑜 杜洋 LIANG Zeqi;ZHOU Yun;FENG Donghan;GUO Lingyu;DU Yang(Key Laboratory of Control of Power Transmission and Conversion,Ministry of Education(Shanghai Jiao Tong University),Shanghai 200240,China;Electric Power Research Institute,State Grid Shanghai Municipal Electric Power Company,Shanghai 200437,China)

机构地区:[1]电力传输与功率变换控制教育部重点实验室(上海交通大学),上海市200240 [2]国网上海市电力公司电力科学研究院,上海市200437

出  处:《电力建设》2023年第12期43-53,共11页Electric Power Construction

基  金:上海市优秀学术带头人项目(23XD1422000);国家自然科学基金项目(52077139)。

摘  要:园区综合能源系统(park-integrated energy system,PIES)是能源系统优化升级、电力行业减碳的重点,园区如何通过制定交易策略参与电碳绿证市场,提高整体效益并降低系统碳排放,是未来开放市场环境下园区快速发展的关键。基于园区三方主体非合作博弈模式,构建绿电日前市场、常规能源日前市场、实时市场的电力市场运行框架,并引入绿证-碳排等价抵消机制以实现绿证交易和碳交易的衔接,提出一种考虑电碳绿证市场耦合的园区综合能源系统日前优化调度模型。最后,采用改进粒子群算法和交替方向乘子法对非线性模型进行求解,并在上海市某典型园区进行验证。结果表明,所提方法可以有效减少园区碳排放量,园区绿电在电力消费总量占比提高6.4%。A park-integrated energy system(PIES)is the key to optimizing and upgrading energy systems and reducing carbon emissions in the power industry.How parks participate in the electricity-carbon-green certificate market by formulating trading strategies,improving overall efficiency,and reducing system carbon emissions is key to the rapid development of parks in the future open market environment.This study is based on the noncooperative game model of three parties in a park,constructing a power market operation framework of green electricity day-ahead market,conventional energy day-ahead market,and real-time market,and introducing a green certificate-carbon emission equivalent offset mechanism to achieve a connection between green certificate trading and carbon trading.A park comprehensive energy system day-ahead optimization scheduling model that considers the coupling of the electricity-carbon-green certificate market was proposed.Finally,the improved particle swarm optimization algorithm and alternating direction multiplier method are utilized to solve the nonlinear model and verified in a typical park in Shanghai.The results indicated that the proposed method could effectively reduce carbon emissions in the park,and the proportion of green electricity in the total electricity consumption of the park increased by 6.4%.

关 键 词:园区综合能源系统(PIES) 电碳绿证市场 绿证-碳排等价抵消机制 非合作博弈 日前优化调度 

分 类 号:TM73[电气工程—电力系统及自动化]

 

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