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储能系统技术 储能系统 ★ 5.0

通过逆变器资源的优化协调增强电网小信号稳定性

Enhancing the Small-Signal Stability of Power Grids via Optimally Coordinating Inverter-Based Resources

作者 Hui Yuan · Huanhai Xin · Zhiyi Li · Shiyang Li · Jiang Dai · Huisheng Gao
期刊 IEEE Transactions on Sustainable Energy
出版日期 2024年5月
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 逆变器资源 小信号稳定约束 优化模型 顺序求解方法 动态区域调整方法
语言:

中文摘要

高比例逆变器型电源(IBRs)接入的现代电力系统常面临由锁相环(PLL)主导的小信号稳定问题,尤其在短路容量较低的电网中更为突出。传统控制器设计改进在某些临界工况下效果有限。为此,本文提出一种满足小信号稳定约束(SSSCs)的IBR有功出力协调优化模型。SSSCs基于反映电网强度的新指标构建,适用于“黑箱”型IBRs。为降低求解复杂度,采用序贯求解策略将原问题分解为一系列子优化问题,并结合动态区域调整与凸松弛方法,确保可行解存在并提升求解效率。最后通过两个测试系统验证了所提方法的有效性。

English Abstract

Modern power systems with the high penetration of inverter-based resources (IBRs) commonly face phase-lock loops (PLLs)-dominated small-signal stability issues, especially in low short-circuit grids. These issues can be addressed by refining controllers’ design of IBRs, which however fails to be effective when power grids are operating under some critical conditions. To this end, this paper presents a novel optimization model for coordinating active power outputs (i.e., operation adjustment) of IBRs while satisfying small-signal stability constraints (SSSCs). In particular, SSSCs are formulated based on a new metric that quantifies the small-signal stability from the viewpoint of grid strength, which is especially suitable for those “black-boxed” IBRs. To reduce the problem-solving complexity due to the inherent discontinuity and nonlinearity, a sequential solution approach is proposed to decompose the original optimization problem into a sequence of sub-optimization problems (SOPs). Also, a dynamical-region-adjustment method and a convex-relaxing method are integrated to ensure the existence of feasible solutions and further enhance the solution efficiency. Finally, the performance of the proposed method is verified based on two test power systems.
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SunView 深度解读

该研究针对高比例IBR并网的PLL主导小信号稳定问题,对阳光电源ST系列储能变流器和SG系列光伏逆变器的弱电网适应性提升具有重要价值。所提基于电网强度指标的有功出力协调优化方法,可直接应用于PowerTitan大型储能系统的功率管理策略,通过优化多台储能变流器的出力分配,避免弱电网工况下的振荡风险。该方法适用于'黑箱'型IBR的特点,便于集成到iSolarCloud云平台,实现多站点光储系统的协调控制。序贯优化求解策略为阳光电源开发实时功率调度算法提供了技术路径,可增强产品在低短路比场景下的稳定运行能力,提升系统级解决方案竞争力。