考虑热网蓄热能力的城市综合能源系统站网协同优化规划

IF 10 1区 工程技术 Q1 ENERGY & FUELS
Shunjiang Yu;Changming Chen;Yunchu Wang;Hongfei Yu;Chuanxun Pei;Jiaorong Ren;Li Yang;Zhenzhi Lin
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引用次数: 0

摘要

城市综合能源系统(UIES)中热网的蓄热能力具有显著提高系统运行灵活性的潜力。为了获得最优的UIES规划方案,提出了考虑蓄热容量的UIES站网协同优化规划方法。首先,建立了考虑流向描述的恒流量-变温热网运行模型,解决了现有模型无法直接应用于UIES-SNCOP管道流动方向的问题;然后,建立了面向径向结构的配网和热网拓扑模型,保证了供电网的径向性,同时降低了规划成本。在此基础上,构建了基于信息缺口决策理论和随机优化的ies - sncop模型,实现了电站选址规模与配热网拓扑结构的协同优化。最后,提出了一种基于松弛-收缩耦合McCormick包络的ies - sncop模型求解方法,有效提高了求解结果的精度。在包含55个节点的城市拓扑上对UIES进行规划,以测试所提方法的性能,仿真结果表明,所提方法在降低规划成本、保证供能网络径向结构、充分利用蓄热能力和提高求解精度等方面优于现有方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Station-Network Cooperative Optimization Planning of Urban Integrated Energy System Considering Heat Storage Capacity of Heat Network
Heat storage capacity of heat network in urban integrated energy system (UIES) has the potential to significantly improve the operational flexibility of the system. To obtain the optimal UIES planning scheme, a UIES station-network cooperative optimization planning (UIES-SNCOP) method considering heat storage capacity is proposed. First, a heat network operation model under constant flow-variable temperature considering flow direction depiction is established for solving the problem that the existing model cannot be directly applied to UIES-SNCOP because the flow direction of pipeline cannot be predetermined. Then, a radial structure-oriented topology model of distribution and heat networks is developed to ensure the radiality of energy supply network while also reducing planning cost. On this basis, a UIES-SNCOP model based on information gap decision theory and stochastic optimization is constructed to realize the co-optimization of the siting and sizing of energy station and topology of distribution and heat networks. Finally, a solution method of UIES-SNCOP model based on relaxation-contraction coupled McCormick envelope is proposed for effectively improving the accuracy of solution result. The planning of UIES is conducted on an urban topology containing 55 nodes to test the performance of the proposed method, and simulation results indicate that the proposed method outperforms other existing methods in terms of reducing planning cost, ensuring radial structure of the energy supply network, utilizing heat storage capacity and enhancing solution accuracy.
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来源期刊
IEEE Transactions on Sustainable Energy
IEEE Transactions on Sustainable Energy ENERGY & FUELS-ENGINEERING, ELECTRICAL & ELECTRONIC
CiteScore
21.40
自引率
5.70%
发文量
215
审稿时长
5 months
期刊介绍: The IEEE Transactions on Sustainable Energy serves as a pivotal platform for sharing groundbreaking research findings on sustainable energy systems, with a focus on their seamless integration into power transmission and/or distribution grids. The journal showcases original research spanning the design, implementation, grid-integration, and control of sustainable energy technologies and systems. Additionally, the Transactions warmly welcomes manuscripts addressing the design, implementation, and evaluation of power systems influenced by sustainable energy systems and devices.
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