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储能系统技术 储能系统 构网型GFM ★ 5.0

系统强度约束下的构网型储能规划在可再生能源电力系统中的应用

System Strength Constrained Grid-Forming Energy Storage Planning in Renewable Power Systems

作者 Yun Liu · Yue Chen · Huanhai Xin · Jingzhe Tu · Lin Zhang · Meiyi Song
期刊 IEEE Transactions on Sustainable Energy
出版日期 2024年11月
技术分类 储能系统技术
技术标签 储能系统 构网型GFM
相关度评分 ★★★★★ 5.0 / 5.0
关键词 电网强度 小信号稳定性 并网型储能系统 优化规划 广义短路比
语言:

中文摘要

随着基于逆变器的可再生能源逐步替代同步发电机,现代电力系统的系统强度显著下降,可能引发小信号稳定性问题。构网型换流器储能系统虽在提升系统强度方面具有灵活性和有效性,但其规划阶段的经济性与系统强度支撑能力协同优化仍缺乏研究。本文提出一种考虑系统强度约束的构网型储能优化规划方法,以实现期望的小信号稳定裕度。基于广义短路比框架,量化储能容量与位置对系统强度的影响,并构建含特征值约束的选址定容优化模型。考虑有无候选站点数量限制两种场景,设计基于二次支撑函数的迭代优化算法求解。在改进的IEEE 39节点和118节点系统上的算例验证了所提方法在不同场景下的有效性与高效性。

English Abstract

With more inverter-based renewable energy resources replacing synchronous generators, the system strength of modern power networks significantly decreases, which may induce small-signal stability (SS) issues. It is commonly acknowledged that grid-forming (GFM) converter-based energy storage systems (ESSs) enjoy the merits of flexibility and effectiveness in enhancing system strength, but how to simultaneously consider the economic efficiency and system-strength support capability in the planning stage remains unexplored. To bridge the research gap, this paper develops a system strength constrained optimal planning approach of GFM ESSs to achieve a desired level of SS margin. To this end, the influence of GFM ESS power capacities and locations on the system strength is firstly quantified based on the framework of generalized short-circuit ratio. On this basis, system strength constrained optimal placement and sizing of GFM ESSs is formulated into optimization problems with eigenvalue constraints. Two practical scenarios with and without a limit on the number of selected sites are considered. Finally, quadratic support function based iterative optimization approaches are developed to address the planning problems. Case studies in the modified IEEE 39-bus and 118-bus systems validate the effectiveness and efficiency of the proposed approaches under different scenarios by comparing with two other benchmarks.
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SunView 深度解读

该研究对阳光电源ST系列储能变流器和PowerTitan大型储能系统的构网型GFM控制技术具有重要应用价值。文中提出的基于广义短路比的储能选址定容优化方法,可直接应用于阳光电源储能系统规划方案设计,通过量化储能容量与位置对系统强度的贡献,优化PowerTitan在弱电网场景下的配置策略。特征值约束的小信号稳定性分析方法可集成到iSolarCloud云平台的智能规划模块,为客户提供兼顾经济性与系统强度支撑的储能方案。该技术对提升阳光电源构网型储能产品在高比例新能源电网中的竞争力和系统级价值具有直接指导意义,特别是在弱电网并网和独立微网应用场景。