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系统并网技术 ★ 5.0

基于维度分解的灵活性聚合实现互联电网非迭代协调

Non-Iterative Coordination of Interconnected Power Grids via Dimension-Decomposition-Based Flexibility Aggregation

作者 Siyuan Wang · Cheng Feng · Fengqi You
期刊 IEEE Transactions on Power Systems
出版日期 2025年8月
技术分类 系统并网技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 区域电网 灵活性聚合模型 非迭代协调 降维算法 互联电网调度
语言:

中文摘要

为实现高效运行,大容量电网被划分为通过多条联络线互联的区域电网。由于互联电网由不同的控制中心运营,跨多个区域电网进行协调调度颇具挑战。一种可行的解决方案是为每个区域电网计算灵活性聚合模型,然后利用这些聚合模型优化联络线调度计划,以实现非迭代协调。然而,在高维空间中计算聚合模型时,诸如复杂的相互依赖关系和维数灾难等挑战依然存在。现有的方法,如傅里叶 - 莫兹金消元法、顶点搜索法和多参数规划法,受限于维度和保守性,阻碍了它们的实际应用。本文提出了一种基于维度分解的新型灵活性聚合算法,用于计算多个区域电网的聚合模型,从而实现大规模互联系统中的非迭代协调。与现有方法相比,该方法的计算复杂度显著降低,灵活性区域的保守性也更小。为每个区域电网推导的灵活性聚合模型具有明确的物理对应关系,这有助于对多端口区域电网进行直观分析,并为了解其内部资源禀赋提供有价值的见解。数值测试验证了聚合模型的可行性,并证明了其在协调互联电网方面的准确性。

English Abstract

The bulk power grid is divided into regional grids interconnected with multiple tie-lines for efficient operation. Since interconnected power grids are operated by different control centers, coordinating dispatch across multiple regional grids is challenging. A viable solution is to compute a flexibility aggregation model for each regional power grid; then optimize the tie-line schedule using the aggregated models to implement non-iterative coordination. However, challenges such as intricate interdependencies and the curse of dimensionality persist in computing the aggregated models in high-dimensional space. Existing methods like Fourier-Motzkin elimination, vertex search, and multi-parameter programming are limited by dimensionality and conservatism, hindering their practical application. This paper presents a novel dimension-decomposition-based flexibility aggregation algorithm for calculating the aggregated models of multiple regional power grids, enabling non-iterative coordination in large-scale interconnected systems. Compared to existing methods, the proposed approach yields a significantly lower computational complexity and a less conservative flexibility region. The derived flexibility aggregation model for each regional power grid has a well-defined physical counterpart, which facilitates intuitive analysis of multi-port regional power grids and provides valuable insights into their internal resource endowments. Numerical tests validate the feasibility of the aggregated model and demonstrate its precision in coordinating interconnected power grids.
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SunView 深度解读

该维度分解灵活性聚合技术对阳光电源的储能和光伏产品线具有重要应用价值。可用于优化ST系列储能变流器和PowerTitan系统的多机并联控制策略,提升大规模储能电站的协调运行效率。对SG系列光伏逆变器的GFM/GFL控制也有重要参考意义,有助于提高光储混合电站的系统稳定性。该方法可集成到iSolarCloud平台,实现跨区域光储电站群的非迭代协同调度,降低通信负担。这为阳光电源开发更高效的分布式能源管理系统提供了创新思路,对提升产品竞争力具有积极意义。