邓莉荣, 杨大炜, 符杨. 基于多参数规划的园区综合能源系统解耦报价策略[J]. 中国电机工程学报, 2025, 45(10): 3752-3763. DOI: 10.13334/j.0258-8013.pcsee.241443
引用本文: 邓莉荣, 杨大炜, 符杨. 基于多参数规划的园区综合能源系统解耦报价策略[J]. 中国电机工程学报, 2025, 45(10): 3752-3763. DOI: 10.13334/j.0258-8013.pcsee.241443
DENG Lirong, YANG Dawei, FU Yang. Decoupled Bidding Strategy for Community Integrated Energy System Based on Multi-parameter Programming[J]. Proceedings of the CSEE, 2025, 45(10): 3752-3763. DOI: 10.13334/j.0258-8013.pcsee.241443
Citation: DENG Lirong, YANG Dawei, FU Yang. Decoupled Bidding Strategy for Community Integrated Energy System Based on Multi-parameter Programming[J]. Proceedings of the CSEE, 2025, 45(10): 3752-3763. DOI: 10.13334/j.0258-8013.pcsee.241443

基于多参数规划的园区综合能源系统解耦报价策略

Decoupled Bidding Strategy for Community Integrated Energy System Based on Multi-parameter Programming

  • 摘要: 园区综合能源系统具有多种能源形式、跨时间尺度和产消二元身份等多重耦合特征,从而产生了高维报价信息空间,给园区参与综合能源市场报价带来了挑战。为此,提出一种基于多参数规划的园区综合能源系统解耦报价策略。首先,针对现有综合能源市场运营机制,建立适应于集中式/分散式市场结构的园区统一报价模型。然后,为提取简洁有效信息上报市场,基于多参数规划理论,对于集中式市场,推导出园区竞价成本和多种交易能量的报价曲面;对于分散式市场,推导出多组提交到不同能源市场的功率-能价曲线,量化表征园区在不同市场价格下的交易意愿,实现高维报价信息解耦,保证市场运行效率。在此基础上,提出考虑园区降维报价曲面/曲线的综合能源市场优化出清方法。最后,通过算例仿真验证所提方法的有效性和合理性。

     

    Abstract: The community integrated energy system features multiple forms of energy, cross-time scales, and the dual identity of production and consumption, resulting in a high-dimensional bidding information space. This presents significant challenges for the community's participation in integrated energy market bidding. To address these complexities, a decoupled bidding strategy for the community integrated energy system based on multi-parameter programming is proposed. First, a unified bidding model adapted to both centralized and distributed market structures is established to address the substantial differences in the current integrated energy market operation mechanisms. Subsequently, a community's bidding strategy is constructed based on multi-parameter programming theory to extract concise and effective information for market bidding. For the centralized market structure, the bidding surface for the community's cost and various trading energies are derived. For the decentralized market structure, multiple sets of quantity-price curves targeting different energy markets are extracted, quantitatively characterizing the community's trading willingness under different market prices. This decouples the high-dimensional bidding information of the community, ensuring market operation efficiency. Based on this framework, a clearing method is proposed to accommodate the reduced-dimensional bidding surfaces/curves in the integrated energy market. Finally, the simulation results verify the effectiveness and practicability of the proposed method.

     

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