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储能系统技术 储能系统 ★ 5.0

抽水蓄能水电的解析调度策略:一种针对不连续多周期优化问题的条件动态规划方法

Analytical dispatch strategies for pumped storage hydro: A conditional dynamic programming approach to discontinuous multi-period optimization problems

作者 Jian Liu · Jianwen Zhang · Zaiwu Gong · Donald C. Wunsch · Rui Bo
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 383 卷
技术分类 储能系统技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Developed two PSH economic dispatch models with non-zero lower bounds.
语言:

中文摘要

摘要 随着风能和太阳能等可再生能源在电力系统中的渗透率不断提高,电网的安全稳定运行面临重大挑战。储能系统,特别是抽水蓄能水电(PSH),在平衡电力供需方面发挥着关键作用。传统的PSH经济调度问题解析研究通常假设发电和抽水速率的下限为零,以简化分析并求解多周期优化问题的解析解。然而,PSH固有的机械设计约束要求存在非零的最小流量以保证高效运行。本文分析了两种场景:仅拥有PSH的商户,以及同时拥有PSH和风电场的商户。在仅含PSH的场景中,四个解析确定的荷电状态(SOC)参考点将SOC范围划分为五个子区域,每个子区域对应一种特定的最优决策。在PSH与风电场协同优化的场景中,五个SOC参考点将SOC范围划分为六个子区域。通过在下一周期简单比较当前SOC与这些参考点,用户即可为每一周期推导出唯一且解析最优的经济调度决策。研究结果表明,非零的最小容量约束显著影响最优调度策略,增加了PSH系统处于空闲状态的可能性,并可能降低套利利润。我们使用合成数据以及来自中大陆独立系统运营商(Midcontinent Independent System Operator)的实际数据验证了所提出方法的有效性,证明了其实际应用价值。该方法在储能调度策略方面实现了重要进展,为多周期优化问题提供了可扩展的、解析最优的解决方案,从而提升了储能系统管理的经济效率。

English Abstract

Abstract The increasing integration of renewable energy sources like wind and solar poses significant challenges to secure and stable grid operation. Energy storage systems , particularly pumped storage hydro (PSH), play a crucial role in balancing power supply and demand. Traditional analytical studies of PSH economic dispatch problems often assume zero lower bounds for generating and pumping rates to simplify analysis and derive analytical solutions for multi-period optimization problems. However, the inherent mechanical design constraints of PSH require non-zero minimum flow rates for efficient operation. We analyze two scenarios, merchants having PSH only and merchants having both PSH and wind farms . In the PSH-only scenario, four analytically determined State of Charge (SOC) reference points divide the SOC range into five sub-regions, each corresponding to a specific optimal decision. In the co-optimized PSH and wind farms scenario, five SOC reference points split the SOC range into six sub-regions. By simply comparing the current SOC with these reference points in the next period, users can derive unique, analytically optimal economic dispatch decisions for each period. Our findings indicate that non-zero minimum capacity constraints significantly influence the optimal dispatch strategy, increasing the likelihood of PSH systems remaining idle and potentially reducing arbitrage profits. We validate our proposed approach using both synthesized data and real data from the Midcontinent Independent System Operator , demonstrating its practical applicability. This methodology represents a significant advancement in energy storage dispatch strategies by providing scalable, analytically optimal solutions for multi-period optimization problems, enhancing economic efficiency in the management of energy storage systems.
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SunView 深度解读

该条件动态规划调度策略对阳光电源ST系列储能变流器及PowerTitan系统具有重要应用价值。研究揭示的非零最小流量约束对调度策略的影响,可直接应用于优化我司储能系统的充放电控制算法。通过SOC分区参考点的解析解方法,能够提升iSolarCloud平台的多时段经济调度能力,特别是在光储联合优化场景中,可增强SG光伏逆变器与ST储能系统的协同效率,减少空转损耗,提高套利收益,为电网侧和工商业储能项目提供更精准的能量管理策略。