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★ 5.0
含变流器接口电源的电力系统稳定边界:演化与转捩点
Stability Boundary of Power System With Converter Interfaced Generation: Evolution and Transition Point
| 作者 | Yiming Wang · Shiyun Xu · Huadong Sun · Chen Shen |
| 期刊 | IEEE Transactions on Power Systems |
| 出版日期 | 2024年6月 |
| 技术分类 | 电动汽车驱动 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 电力系统 换流器接口发电 不稳定周期轨道 暂态稳定分析 稳定边界 |
语言:
中文摘要
近期研究表明,含换流器接口发电(CIG)的电力系统暂态失稳主要与不稳定周期轨道(UPO)有关,而非不稳定平衡点(UEP)。这种现象在弱电网中尤为显著,凸显了研究稳定边界主导因素从 UEP 向 UPO 转变过程的重要性。为此,本研究提出了一种基于能量 - 角度复向量的电力系统暂态稳定分析新框架。在此框架下,开展了稳定边界转变点识别和稳定裕度评估工作。研究发现,CIG 占比增加、系统强度降低以及 CIG 控制参数设置不当等参数条件的变化,可能导致 UPO 在塑造稳定边界中起主导作用,进而使基于 UEP 的判据失效且不再保守。仿真结果验证了所得结论的有效性。随着 CIG 接入规模的不断扩大,基于 UPO 的稳定特性在未来电力系统中的重要性将日益凸显。
English Abstract
Recent studies indicate that transient instability in power systems with converter interfaced generation (CIG) is primarily related to unstable periodic orbit (UPO) rather than unstable equilibrium point (UEP). This phenomenon is noticeable in weak grids, emphasizing the importance of studying the evolution of the stability boundary's dominant, from UEP to UPO. To address this, the present study introduces a novel transient stability analysis framework for power systems, which relies on the energy-angle complex vector. Both the identification of transition point of the stability boundary and the stability margin assessment are conducted under this framework. It is revealed that variations in parameter conditions, such as an increased proportion of CIG, a decrease in system strength, and inadequate control parameters for CIG, may lead to the dominance of UPO in shaping the stability boundary. This may lead to the ineffectiveness and non-conservatism of the UEP-based criteria. Simulation results demonstrate the effectiveness of the derived conclusions. With the increasing integration scale of CIG, the growing importance of UPO-based stability characteristic will become pronounced in future power systems.
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SunView 深度解读
该稳定边界演化理论对阳光电源高渗透率新能源系统具有重要指导意义。针对ST系列储能变流器和SG光伏逆变器,UPO失稳机制分析可优化GFM/GFL控制策略的参数边界设计,避免系统运行点接近临界转捩点。在PowerTitan大型储能系统中,可基于拓扑变化特征建立稳定域实时监测模型,提前预警环面分岔风险。对于多机并联场景,该理论有助于优化虚拟同步机VSG的阻尼参数配置,拓展稳定运行区域。建议将转捩点识别算法集成至iSolarCloud平台,实现电力电子化电网的预测性稳定评估与自适应控制参数调整。