中国电力 ›› 2023, Vol. 56 ›› Issue (11): 95-103.DOI: 10.11930/j.issn.1004-9649.202304043

• 新型电力系统低碳规划与运行 • 上一篇    下一篇

考虑碳流需求响应的电力系统低碳运行策略

孙志媛(), 孙艳(), 刘默斯(), 宋益()   

  1. 广西电网有限责任公司电力科学研究院,广西 南宁 530023
  • 收稿日期:2023-04-13 出版日期:2023-11-28 发布日期:2023-11-28
  • 作者简介:孙志媛(1982—),女,通信作者,高级工程师,从事电力系统分析与计算研究,E-mail: 77569646@qq.com
    孙艳(1983—),男,高级工程师,从事电力系统分析与计算研究,E-mail: 576282746@qq.com
    刘默斯(1986—),女,高级工程师,从事电力系统分析与计算研究,E-mail: liums@qq.com
    宋益(1993—),男,工程师,从事电力系统保护与控制研究,E-mail: songyi93@qq.com
  • 基金资助:
    南方电网有限公司科技项目(中长期低碳化时空供需平衡分析关键技术及平台研发,GXKJXM20220031);国家自然科学基金资助项目(52277080)。

Low-Carbon Operation Strategy of Power System Considering Carbon Flow Demand Response

Zhiyuan SUN(), Yan SUN(), Mosi LIU(), Yi SONG()   

  1. Electrical Power Research Institute of Guangxi Power Grid Co., Ltd., Nanning 530023, China
  • Received:2023-04-13 Online:2023-11-28 Published:2023-11-28
  • Supported by:
    This work is supported by Science & Technology Project of South China Power Grid Co., Ltd. (Research and Development of Key Technologies and Platforms for Medium-Term and Long-Term Low-Carbon Space-Time Supply and Demand Balance Analysis, No.GXKJXM20220031) and National Natural Science Foundation of China (No.52277080).

摘要:

针对传统低碳调度方法中未充分挖掘用户侧碳减排潜力的问题,提出一种考虑碳流需求响应的电力系统低碳运行策略,以调整用户用电行为从而降低系统整体的碳排放量。首先,基于碳排流理论与负荷侧碳排放责任分摊方法,建立一种以碳势为信号的用户侧需求侧响应方法。其次,将碳排放成本纳入电力系统经济成本中,以电力系统总经济成本最小为目标,建立考虑碳流需求响应的电力系统低碳优化运行模型。最后,以IEEE 30节点系统进行仿真,验证了本文所提方法的有效性。

关键词: 低碳电力, 碳排放流, 节点碳势, 需求响应, 优化运行

Abstract:

To address the problem that the traditional low-carbon dispatching methods for power system do not consider the carbon emission reduction potential of users, a low-carbon operation strategy of power system considering carbon flow demand response is proposed to adjust users' electricity consumption behavior and reduce the overall carbon emissions of power system. Firstly, based on the carbon emission flow theory and load-side carbon emission obligation allocation method, a user-side demand response method is established with carbon potential as signal. Secondly, the carbon emission cost is included in the economic cost of power system. Aiming at minimizing the total economic cost of the power system, a low-carbon optimal operation model of power system is established considering the carbon flow demand response. Finally, an IEEE 30 node system is simulated to verify the effectiveness of the proposed method.

Key words: low-carbon electricity, carbon emission flow, nodal carbon potential, demand response, optimal operation

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