郑林烽, 缪源诚, 滕晓毕, 米翰宁, 徐澄科, 严正, 黎灿兵, 陈思捷. 考虑配储的火电机组灵活性改造模型与方法[J]. 中国电机工程学报, 2025, 45(4): 1501-1512. DOI: 10.13334/j.0258-8013.pcsee.231566
引用本文: 郑林烽, 缪源诚, 滕晓毕, 米翰宁, 徐澄科, 严正, 黎灿兵, 陈思捷. 考虑配储的火电机组灵活性改造模型与方法[J]. 中国电机工程学报, 2025, 45(4): 1501-1512. DOI: 10.13334/j.0258-8013.pcsee.231566
ZHENG Linfeng, MIAO Yuancheng, TENG Xiaobi, MI Hanning, XU Chengke, YAN Zheng, LI Canbing, CHEN Sijie. Model and Method for Flexible Retrofit of Thermal Power Units Considering Energy Storage Configuration[J]. Proceedings of the CSEE, 2025, 45(4): 1501-1512. DOI: 10.13334/j.0258-8013.pcsee.231566
Citation: ZHENG Linfeng, MIAO Yuancheng, TENG Xiaobi, MI Hanning, XU Chengke, YAN Zheng, LI Canbing, CHEN Sijie. Model and Method for Flexible Retrofit of Thermal Power Units Considering Energy Storage Configuration[J]. Proceedings of the CSEE, 2025, 45(4): 1501-1512. DOI: 10.13334/j.0258-8013.pcsee.231566

考虑配储的火电机组灵活性改造模型与方法

Model and Method for Flexible Retrofit of Thermal Power Units Considering Energy Storage Configuration

  • 摘要: 为应对大规模可再生能源并网给电力系统带来的调峰负担,我国多个省份要求火电机组承担调峰任务。考虑到火电机组自身提供深调峰服务的成本较高,火电配储成为火电承担调峰责任的另一种技术路线。该文首先分析了火电机组深调峰改造和加装储能设施的成本与收益,并提出火储联合发电系统的配置运行优化模型。其次,通过分段线性化和二元展开法简化模型,实现模型的快速求解。结果表明,相比于火电仅开展深调峰改造或只加装储能,通过开展深调峰改造联合配置储能的方式,能够更有效地提升火电的调峰能力和运行经济性。

     

    Abstract: To address the burden of peak shaving in power system caused by the integration of large-scale renewable energy, several provinces have imposed mandates on thermal power units to assume the responsibility of peak shaving. Given the significant expenses associated with offering deep peak shaving services using thermal power units, thermal power units retrofitted with energy storage have emerged as an alternative technical approach for them to assume peak shaving responsibilities. In this study, the cost and benefit of deep peak-shaving retrofit of thermal power units and the installation of energy storage facilities are analyzed, and an optimization model is proposed for the configuration and operation of the combined thermal power generation system. Then, the piecewise linearization and binary expansion method are adopted to simplify this model, realizing the rapid solution of it. The case results show that, compared with thermal power only carrying out deep peak-shaving retrofit or energy storage installation, the retrofit of thermal power units by deep peak-shaving retrofit combined with energy storage configuration can improve the peak-shaving capability and operating economy of thermal power units more effectively.

     

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