黄邻熹, 刘继春, 刘阳. 与新能源互补和独立参加多级市场的抽蓄电站容量分配策略[J]. 电网技术, 2024, 48(12): 4948-4957. DOI: 10.13335/j.1000-3673.pst.2023.1845
引用本文: 黄邻熹, 刘继春, 刘阳. 与新能源互补和独立参加多级市场的抽蓄电站容量分配策略[J]. 电网技术, 2024, 48(12): 4948-4957. DOI: 10.13335/j.1000-3673.pst.2023.1845
HUANG Linxi, LIU Jichun, LIU Yang. Capacity Allocation Strategies for Pumped Storage Plants That Complement Renewable Energy Sources and Participate Independently in the Multi-level Market[J]. Power System Technology, 2024, 48(12): 4948-4957. DOI: 10.13335/j.1000-3673.pst.2023.1845
Citation: HUANG Linxi, LIU Jichun, LIU Yang. Capacity Allocation Strategies for Pumped Storage Plants That Complement Renewable Energy Sources and Participate Independently in the Multi-level Market[J]. Power System Technology, 2024, 48(12): 4948-4957. DOI: 10.13335/j.1000-3673.pst.2023.1845

与新能源互补和独立参加多级市场的抽蓄电站容量分配策略

Capacity Allocation Strategies for Pumped Storage Plants That Complement Renewable Energy Sources and Participate Independently in the Multi-level Market

  • 摘要: 我国部分区域已构建含风光水蓄的互补联合电站,随着电力现货市场的发展,现行两部制电价下抽水蓄能电站面临灵活调节能力价值难以体现,获利空间有限的问题。为此,提出一种与新能源互补以及独立参与电能量、调频和备用等多级市场的双模式下抽水蓄能电站容量分配策略。基于现货市场运行机制,考虑对手报价和新能源出力不确定性,构建了双模式下抽蓄容量分配双层模型,上层以抽蓄收益最大为目标做出容量分配决策,其中,互补模式下抽蓄电站与风电光伏机组以约定价格形成联合体;下层以社会总成本最小为目标进行主辅市场联合出清。采用多场景的方法描述风光出力波动带来的收益风险,并通过双层智慧型自适应粒子群算法对模型进行求解。算例仿真结果证明,抽蓄采用提出的容量分配策略,参与市场竞争的收益比两部制电价收益有明显提高,互补模式降低新能源发电机组因出力波动产生的考核费用的同时增加抽蓄自身收益,降低了对容量电费的依赖性,为未来抽蓄电站成本回收和盈利提供理论参考。

     

    Abstract: Some regions in China have constructed complementary joint power plants containing wind, photovoltaic, and water storage. With the development of the electricity spot market, pumped storage power plants under the current two-part tariff system face difficulty reflecting the value of flexible adjustment capacity and limited profit space. This paper proposes a capacity allocation strategy for pumped storage plants in a dual mode with complementary renewable energy sources and independent participation in multi-level markets such as electric energy, frequency regulation, and reserve. Based on the operation mechanism of the spot market, considering the rival offer and the uncertainty of renewable energy output, a bi-level model of pumped storage capacity allocation under the dual mode is constructed. The upper level makes capacity allocation decisions intending to maximize pumped storage revenues, in which pumped storage power plants in the complementary mode form a consortium with wind and photovoltaic units at an agreed price, and the lower level conducts a joint clearing of the energy and ancillary markets intending to minimize the total cost to society. A multi-scenario approach is used to describe the revenue risk from wind and photovoltaic power output fluctuations, and a bi-level smart adaptive particle swarm optimization is used to solve the model. The simulation results of the case prove that after pumped storage adopts the capacity allocation strategy proposed in this paper, the benefit of participating in market competition is significantly improved compared with the benefit of a two-part tariff, and the complementary mode reduces the appraisal cost of renewable energy generating units due to the fluctuation of the output while increasing the benefit of the pumped storage itself, reduces the dependence on the capacity tariff and provides theoretical references for the future cost recovery and profitability of the pumped storage plant.

     

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