Capacity planning for large-scale wind-photovoltaic-pumped hydro storage energy bases based on ultra-high voltage direct current power transmission

IF 9.4 1区 工程技术 Q1 ENERGY & FUELS Energy Pub Date : 2025-02-22 DOI:10.1016/j.energy.2025.135224
Jianyang Sun , Chengguo Su , Jingchao Song , Chenchen Yao , Zaimin Ren , Quan Sui
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引用次数: 0

Abstract

To address the mismatch between renewable energy resources and load centers in China, this study proposes a two-layer capacity planning model for large-scale wind-photovoltaic-pumped hydro storage energy bases integrated with ultra-high-voltage direct current transmission lines. The model introduces a multi-mode operational framework, enhancing its adaptability to diverse regional conditions and operational scenarios. Additionally, it explicitly incorporates ultra-high-voltage direct current operational constraints, ensuring realistic and robust transmission planning. The outer-layer focuses on capacity optimization, while the inner-layer employs an 8760-h time-series simulation to comprehensively evaluate operational performance under varying conditions, offering a practical and generalizable solution for renewable energy base planning. The case study shows that: (1) Integrated operation of wind and photovoltaic power with pumped hydro storage enhances transmission stability and efficiency, achieving a power supply guarantee rate over 90 % and curtailment rate below 15 %. (2) Under free transmission mode, the transmission curve is smooth and stable, with power supply guarantee rate surpassing 99 % and curtailment rate under 4 %. (3) Due to temporal mismatches between renewable generation and load demand in Northwest China, the agreed transmission curve mode reveals that pumped hydro storage alone is insufficient to meet external transmission needs, requiring gas turbine units for collaborative regulation.
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基于特高压直流输电的大型风-光电抽水蓄能基地容量规划
针对中国可再生能源资源与负荷中心不匹配的问题,提出了大型风-光伏抽水蓄能基地与特高压直流输电线路集成的两层容量规划模型。该模型引入了多模式作战框架,增强了对不同区域条件和作战场景的适应性。此外,它明确地结合了超高压直流运行约束,确保了现实和稳健的传输规划。外层侧重于容量优化,内层采用8760-h时间序列仿真,综合评价不同条件下的运行性能,为可再生能源基地规划提供实用、通用性强的解决方案。案例研究表明:(1)风电、光伏与抽水蓄能一体化运行,提高了输电稳定性和效率,供电保证率超过90%,弃风率低于15%。(2)在自由输电模式下,输电曲线平稳,供电保证率超过99%,弃电率低于4%。(3)由于西北地区可再生能源发电与负荷需求在时间上的不匹配,约定的输电曲线模式表明,仅靠抽水蓄能不足以满足外部输电需求,需要燃气轮机机组协同调节。
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来源期刊
Energy
Energy 工程技术-能源与燃料
CiteScore
15.30
自引率
14.40%
发文量
0
审稿时长
14.2 weeks
期刊介绍: Energy is a multidisciplinary, international journal that publishes research and analysis in the field of energy engineering. Our aim is to become a leading peer-reviewed platform and a trusted source of information for energy-related topics. The journal covers a range of areas including mechanical engineering, thermal sciences, and energy analysis. We are particularly interested in research on energy modelling, prediction, integrated energy systems, planning, and management. Additionally, we welcome papers on energy conservation, efficiency, biomass and bioenergy, renewable energy, electricity supply and demand, energy storage, buildings, and economic and policy issues. These topics should align with our broader multidisciplinary focus.
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