计及电-气-热需求响应的区域综合能源系统运行优化
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TM732

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国家社会科学基金资助项目(20BJL036)


Operation optimization of regional integrated energy system with electricity-gas-thermal demand response
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National Social Science Foundation Project

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    摘要:

    针对区域综合能源系统(regional integrated energy system,RIES)源荷主体互动少、碳排放强度高、风光消纳能力低以及整体运行效益差等问题,文中提出计及电-气-热价格需求响应的RIES经济低碳运行优化方法。利用电能、天然气、热能共有的商品属性以及多元柔性负荷的可调度价值,建立电-气-热价格需求响应模型,有效增强了价格信号对负荷参与需求响应的激励效应;为充分挖掘系统的低碳潜力,引入阶梯型碳交易,完善实际碳排放模型;以系统运行成本最小为优化目标,研究不同运行方式对系统经济性和低碳性的影响。案例分析结果表明,所构建的运行优化模型采用价格需求响应和阶梯型碳交易协同优化方式,在实现负荷削峰填谷的同时可以兼顾系统运行的经济低碳性与风光消纳能力。

    Abstract:

    In view of the problems of less interaction between source-load entities,high carbon emission intensity,low wind-solar power consumption capacity,and poor overall operating efficiency of the regional integrated energy system (RIES),an optimization method is proposed for the economic low-carbon operation of the RIES taking into account the demand response of electricity-gas-thermal prices. Based on the common commodity attributes of electricity,natural gas,and thermal energy and the dispatchable value of multiple flexible loads,a price-demand response model of electric-gas-thermal is established,which effectively enhances the incentive effect of price signals on load participation in demand response. To fully tap into the low-carbon potential of the system,stepped carbon trading is introduced to improve the actual carbon emission model. With the minimum system operation cost as the optimization goal,the influence of different operation modes on the economy and low carbon of the system is studied. The case study results show that the operation optimization model of price demand response and stepped carbon trading can achieve economic low-carbon system operation and wind-solar power consumption capacity while achieving peak-shaving and valley-filling.

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曾珠梅,孙建梅.计及电-气-热需求响应的区域综合能源系统运行优化[J].电力工程技术,2024,43(5):48-57

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  • 收稿日期:2024-03-15
  • 最后修改日期:2024-05-25
  • 录用日期:2023-05-26
  • 在线发布日期: 2024-09-23
  • 出版日期: 2024-09-28
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