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系统并网技术 ★ 5.0

基于本地电网感知的最优动态辅助服务提供

Optimal Dynamic Ancillary Services Provision Based on Local Power Grid Perception

作者 Verena Häberle · Xiuqiang He · Linbin Huang · Eduardo Prieto-Araujo · Florian Dörfler
期刊 IEEE Transactions on Power Systems
出版日期 2024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 动态辅助服务 换流器接口发电系统 感知与优化策略 参数传递函数矩阵 闭环方法
语言:

中文摘要

在本文中,我们提出了一种基于本地电网感知的系统闭环方法,用于为换流器接口发电系统提供最优动态辅助服务。具体而言,我们以参数化传递函数矩阵的形式对快速频率和电压调节等动态辅助服务进行结构化编码,该矩阵包含多个参数,用于定义一组不同的可行响应行为,我们的目标是从中找到换流器系统要实现的最优行为。我们的方法基于所谓的“感知与优化”(P&O)策略:首先,我们识别换流器系统互联端子处的电网动态等效模型。其次,我们考虑所识别的电网等效模型与参数化传递函数矩阵的闭环互联,并对传递函数参数集进行优化,从而为辅助服务提供稳定且最优的闭环性能。在此过程中,我们确保满足电网规范和设备级要求。最后,我们基于改进的昆杜尔两区域测试系统,在不同的数值案例研究中验证了该方法的有效性。

English Abstract

In this article, we propose a systematic closed-loop approach to provide optimal dynamic ancillary services with converter-interfaced generation systems based on local power grid perception. In particular, we structurally encode dynamic ancillary services such as fast frequency and voltage regulation in the form of a parametric transfer function matrix, which includes several parameters to define a set of different feasible response behaviors, among which we aim to find the optimal one to be realized by the converter system. Our approach is based on a so-called “perceive-and-optimize” (P&O) strategy: First, we identify a grid dynamic equivalent at the interconnection terminals of the converter system. Second, we consider the closed-loop interconnection of the identified grid equivalent and the parametric transfer function matrix, which we optimize for the set of transfer function parameters, resulting in a stable and optimal closed-loop performance for ancillary services provision. In the process, we ensure that grid-code and device-level requirements are satisfied. Finally, we demonstrate the effectiveness of our approach in different numerical case studies based on a modified Kundur two-area test system.
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SunView 深度解读

该研究提出的本地电网感知控制策略对阳光电源的储能和光伏产品线具有重要应用价值。特别适用于ST系列储能变流器和SG系列光伏逆变器的辅助服务功能优化,可实现无需广域通信的自适应控制。通过将该技术集成到现有的GFM/GFL控制架构中,可提升PowerTitan等大型储能系统的电网支撑能力,优化电压/频率调节性能。这一方案也可用于提升iSolarCloud平台的智能调度算法,使产品在复杂电网环境下具备更强的适应性和稳定性。建议在新一代产品中采用该技术,以增强阳光电源在电网友好型新能源设备领域的竞争力。