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状态转移引发的构网型电压源换流器暂态同步失稳:分析与改进
State Transfer Induced Transient Synchronization Instability of GFM-VSC: Analysis and Improvement
| 作者 | Yushuang Liu · Hua Geng · Geng Yang · Meng Huang · Changjun He · Xiaoming Zha |
| 期刊 | IEEE Transactions on Sustainable Energy |
| 出版日期 | 2025年3月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 构网型GFM |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 电网构造型电压源换流器 暂态同步稳定性 状态转移 多李雅普诺夫函数 虚拟功角反馈限流策略 |
语言:
中文摘要
在电网故障等工况下,构网型电压源换流器(GFM-VSC)因电流限幅控制可能在电压源模式(VSM)与电流源模式(CSM)间切换,模式切换过程中的状态转移会影响其暂态同步稳定性(TSS)。本文通过平衡点存在性分析揭示了一种新的失稳机理:状态转移可能导致故障期间运行轨迹绕过CSM下的稳定平衡点而进入发散循环。采用多Lyapunov函数法推导了计及故障动态的TSS判据与边界,发现降低最小临界电流并依据虚拟功率角(VPA)动态调整饱和电流相位可提升TSS。为此提出一种基于VPA反馈的电流限制策略,在抑制过流的同时保障TSS。电磁暂态仿真与硬件在环实验验证了所揭示失稳机制的正确性及所提策略的有效性。
English Abstract
The operation mode of grid-forming voltage source converters (GFM-VSCs) may switch between voltage source mode (VSM) and current source mode (CSM) under some situations such as grid faults, owing to the current limitation control. During the mode-switching process, there is state transfer from the final state of the last mode to the initial state of the next mode, which impacts the transient synchronization stability (TSS) of GFM-VSCs. This paper primarily focuses on analyzing and improving the TSS of GFM-VSCs by considering the effect of state transfer. A novel transient instability mechanism is revealed through the existence analysis of equilibrium points. It clarifies that the state transfer may cause the operating trajectory during faults to bypass the stable equilibrium point in CSM before diverging to the next cycle, thereby resulting in transient synchronization instability. Besides, to further analyze the TSS of mode-switched VSCs considering the dynamics during faults, multiple Lyapunov functions are adopted to derive the TSS criteria and boundaries. It has been identified that lowering the minimum critical current and adjusting the saturated current phase in accordance with virtual power angle (VPA) dynamics can enhance the TSS. Therefore, a VPA feedback-based current limiting strategy is proposed to safeguard GFM-VSCs against overcurrent and ensure the TSS. The validity of the new transient instability mechanism and the efficacy of the proposed strategy are confirmed through simulations of a GFM-VSC connected to an IEEE 39-bus power grid and hardware-in-the-loop experiments.
S
SunView 深度解读
该研究揭示的GFM-VSC状态转移失稳机理对阳光电源ST系列储能变流器和PowerTitan大型储能系统具有重要应用价值。当前ST系列采用构网型控制,在电网故障时需频繁进行VSM/CSM模式切换以实现电流限幅保护,本文所揭示的状态转移导致稳定平衡点绕过的失稳机制,为优化ST系列的电流限幅策略提供了理论依据。所提基于虚拟功角反馈的动态电流限制方法可直接应用于ST系列固件升级,通过降低临界电流阈值并动态调整饱和电流相位,在保障功率器件安全的同时提升弱电网下的暂态同步稳定性,增强PowerTitan系统在高比例新能源电网中的构网支撑能力。