李湃, 王伟胜, 黄越辉, 韩培东, 张金平. 大规模新能源基地经特高压直流送出系统中长期运行方式优化方法[J]. 电网技术, 2023, 47(1): 31-40. DOI: 10.13335/j.1000-3673.pst.2022.1335
引用本文: 李湃, 王伟胜, 黄越辉, 韩培东, 张金平. 大规模新能源基地经特高压直流送出系统中长期运行方式优化方法[J]. 电网技术, 2023, 47(1): 31-40. DOI: 10.13335/j.1000-3673.pst.2022.1335
LI Pai, WANG Weisheng, HUANG Yuehui, HAN Peidong, ZHANG Jinping. Method on Optimization of Medium and Long Term Operation Modes of Large-scale Renewable Energy Power Base Through UHVDC System[J]. Power System Technology, 2023, 47(1): 31-40. DOI: 10.13335/j.1000-3673.pst.2022.1335
Citation: LI Pai, WANG Weisheng, HUANG Yuehui, HAN Peidong, ZHANG Jinping. Method on Optimization of Medium and Long Term Operation Modes of Large-scale Renewable Energy Power Base Through UHVDC System[J]. Power System Technology, 2023, 47(1): 31-40. DOI: 10.13335/j.1000-3673.pst.2022.1335

大规模新能源基地经特高压直流送出系统中长期运行方式优化方法

Method on Optimization of Medium and Long Term Operation Modes of Large-scale Renewable Energy Power Base Through UHVDC System

  • 摘要: 大规模新能源基地经特高压直流送出是我国未来新能源消纳的重要形式,合理优化特高压直流中长期运行方式,是提高新能源基地外送消纳能力的重要基础。提出了基于时序生产模拟的大规模新能源基地经特高压直流送出系统中长期运行方式优化方法。首先,考虑生产模拟计算准确性与复杂度的要求,建立了不同类型光热电站、火电机组和储能电站的聚合运行模型;然后,考虑特高压直流运行模式、灵活调节性能和受端电网负荷调峰需求,建立了不含整数变量的特高压直流运行模型。最后,建立了以新能源最大化外送消纳为目标,考虑各类电源与特高压直流运行约束的中长期运行方式优化模型,提出了基于逐周计算的全年8760h生产模拟计算方法。算例基于含风电/光伏/光热/火电/储能的大规模新能源基地开展测试,结果表明所提出方法能够优化特高压直流年/月运行曲线,实现新能源的最大化外送消纳,计算准确性与效率能够满足工程实用性需求。

     

    Abstract: Large-scale renewable energy power base with UHVDC will play an important role in China. Optimizing the medium and long term operation modes of UHVDC can help to promote the accommodation ability of renewable energy base. This paper proposes a time sequential production simulation based method on optimization of medium and long term operation modes of UHVDC. Firstly, to balance the computational complexity and precision, aggregated operation models of different types of concentrating solar power (CSP), thermal power unit and battery energy storage system (BESS) are established. Secondly, with considering the operation modes, flexible operations and peak-load regulation demand of receiving-end power grid, an UHVDC operation model without integer variables is established. Thirdly, a mathematical model is formulated to optimize the weekly operation modes of UHVDC, which the objective is to maximize the annual power generation of renewable energy, and a sequential algorithm is proposed to solve the annual optimization model week by week. Finally, case studies are conducted by a renewable energy power base with wind power, photovoltaic power (PV), CSP, thermal power and BESS. Testing results verify that the proposed method can optimize the operation modes of UHVDC and maximize the power generation of renewable energy through UHVDC. The computational precision and efficiency also satisfy the applicability in practice.

     

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