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| 作者 | Hui Yuan · Linbin Huang · Huisheng Gao · Di Zheng · Di Wu · Jikui Xing |
| 期刊 | IEEE Transactions on Sustainable Energy |
| 出版日期 | 2024年5月 |
| 技术分类 | 电动汽车驱动 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 静止同步补偿器 基于逆变器资源系统 次/超同步振荡 小信号稳定性 控制参数设计 |
语言:
中文摘要
在多逆变器资源(IBR)系统中,静止同步补偿器(STATCOM)的接入虽可提供电压支撑,但在低短路容量电网中可能加剧由IBR与电网交互引发的次/超同步振荡。由于系统动态复杂且运行工况多变,现有研究难以全面揭示STATCOM对振荡的影响机理并有效设计其阻尼控制。本文从电网强度视角提出一种新方法,揭示STATCOM在多IBR系统中对IBR诱导振荡的影响机制,并通过优化STATCOM控制参数,确保关键工况下多个子系统的鲁棒小信号稳定性,避免依赖大量详细模型的 exhaustive 分析。所提方法在改进的IEEE 39节点系统上得到验证,为高比例电力电子化电力系统中多设备交互机理理解与协调控制提供了有效途径。
English Abstract
Integrating static synchronous compensators (STATCOMs) in a multiple inverter-based-resource (IBR) system for voltage support can deteriorate sub/sup-synchronous oscillation issues caused by the interaction among IBRs and power networks, especially in low short-circuit-level grids. However, it is still challenging to fully understand the impact mechanism of STATCOMs on IBR-induced oscillation issues and to effectively design STATCOMs’ control for dampening these oscillation issues in a multi-IBR system due to complex system dynamics and varying operating conditions. To tackle these challenges, this paper proposes a novel method to reveal how STATCOMs influence IBR-induced oscillation issues in a multi-IBR system from the viewpoint of grid strength, which can consider varying operating conditions. Furthermore, we investigate the robust small-signal stability of the multi-IBR system with STATCOMs by designing STATCOMs’ control parameters to ensure the robust small-signal stability of multiple subsystems under critical operating conditions. This avoids exhaustive studies on many operating conditions with detailed system models. The proposed methods are validated on a modified IEEE 39-node test system. This paper provides an effective way of better understanding the interaction among diversified devices through power network, and coordinating their controls to ensure the system's robust small-signal stability in modern power systems integrated with large-scale power converters.
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SunView 深度解读
该STATCOM鲁棒自适应控制技术对阳光电源多个产品线具有重要应用价值。在PowerTitan大型储能系统中,可借鉴其电网强度视角的振荡抑制方法,优化ST系列储能变流器的阻尼控制策略,解决弱电网下多储能系统并联引发的次/超同步振荡问题。对于构网型GFM控制技术,该研究提出的多设备交互机理分析方法可用于优化虚拟同步机VSG参数设计,提升SG系列光伏逆变器在低短路容量电网中的鲁棒稳定性。特别是在光储充一体化场景下,该方法可指导多逆变器协调控制策略开发,避免依赖详细建模的复杂分析,为iSolarCloud平台的智能参数优化与预测性维护功能提供理论支撑,增强高比例新能源电网的稳定运行能力。