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含控制器限幅的多虚拟同步发电机并网系统同步稳定性
Synchronization Stability of Multiple VSGs Embedded Power System With Controller Limits
| 作者 | Yujun Li · Yiyuan Lu · Jialun Yang · Jingrui Liu · Tongpeng Mu · Hua Ye |
| 期刊 | IEEE Transactions on Power Systems |
| 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 虚拟同步机VSG |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 虚拟同步发电机 同步稳定性 暂态能量函数 临界能量 稳定性条件 |
语言:
中文摘要
本文研究了考虑电流饱和与频率限幅的多虚拟同步发电机(VSG)并网系统的同步稳定性。建立了含控制器限幅的多VSG系统动态模型,构建了未触及限幅时的暂态能量函数(TEF),并采用最近不稳定平衡点法确定稳定域。研究发现系统在若干“离界点”处脱离频率边界,其中存在两个具有最小暂态能量的特殊离界点,且其位置与切换次数无关。提出一种稳定判据:当这两个特殊离界点的能量低于系统临界能量时,系统全局稳定。临界能量由最近UEP法和避免进入电流限幅控制模式的最大势能中的较小值决定。9节点与39节点系统的仿真验证了理论分析的正确性。
English Abstract
This article investigates the synchronization stability of one multiple virtual synchronous generators (VSGs) embedded power system with the current saturation and limits of frequency. The dynamic model of the multiple VSGs integrated system with controller limits is built. Accordingly, the transient energy function (TEF) for the autonomous system without touching controller limits is established, and the stability region is determined via the method of the closet unstable equilibrium point (UEP). Further, it is found that the system leaves away from the bounds of frequency at several leaving bound points. Among these, there exists two special ones with the minimal transient energy, and they are fixed irrespective of the switching times. Finally, one stabilizing condition is proposed that only if the energy of two special leaving bound points is less than the system critical energy, the global stability is ensured. The system critical energy is determined by the minimum of two values, namely, the method by closet UEP, and the maximum potential energy to ensure the system does not enter the mode of current limiting control (CLC). The numerical simulations of 9-buses and 39-buses power systems have verified the correctness of the proposed analysis.
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SunView 深度解读
该研究针对含控制器限幅的多VSG系统同步稳定性分析,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控制具有重要应用价值。研究提出的暂态能量函数法和稳定判据可直接应用于:1)优化ST储能变流器的VSG控制参数整定,提升电流饱和与频率限幅工况下的暂态稳定裕度;2)指导多机并联储能系统的协调控制策略设计,避免离界点能量超限导致失稳;3)为iSolarCloud平台开发实时稳定性监测功能,基于临界能量判据实现预警。该方法可显著提升阳光电源储能系统在弱电网和高比例新能源场景下的并网稳定性,增强构网型产品的市场竞争力。