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基于能量函数嵌入的准稳态模型实现连锁故障高效仿真
Efficient Simulation of Cascading Outages Using an Energy Function-Embedded Quasi-Steady-State Model
| 作者 | Zhenping Guo · Xiaowen Su · Kaiyang Huang · Kai Sun · Srdjan Simunovic · Hsiao-Dong Chiang |
| 期刊 | IEEE Transactions on Power Systems |
| 出版日期 | 2025年1月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 | 级联故障 能量函数 准稳态模型 暂态稳定 电力系统 |
语言:
中文摘要
本文提出一种嵌入能量函数的准稳态模型,用于在考虑暂态稳定性的同时高效模拟电网连锁故障。与传统准稳态模型相比,该模型结合短期动态仿真与能量函数法,无需完整暂态稳定仿真即可评估系统暂态稳定性及故障传播过程。每次扰动后,模型首先进行短时域仿真获取扰动后轨迹,继而搜索势能局部最大点并利用牛顿法求解相关不稳定平衡点,最后基于此点估算暂态能量裕度以预测发电机失步。该模型在NPCC 140节点系统上验证了其精度与计算效率,并与嵌入暂态稳定仿真的准稳态模型进行了对比。
English Abstract
This paper proposed an energy function-embedded quasi-steady-state model for efficient simulation of cascading outages on a power grid while addressing transient stability concerns. Compared to quasi-steady-state models, the proposed model incorporates short-term dynamic simulation and an energy function method to efficiently evaluate the transient stability of a power grid together with outage propagation without transient stability simulation. Cascading outage simulation using the proposed model conducts three steps for each disturbance such as a line outage. First, it performs time-domain simulation for a short term to obtain a post-disturbance trajectory. Second, along the trajectory, the system state with the local maximum potential energy is found and used as the initial point to search for a relevant unstable equilibrium by Newton's method. Third, the transient energy margin is estimated based on this unstable equilibrium to predict an out-of-step condition with generators. The proposed energy function-embedded quasi-steady-state model is tested in terms of its accuracy and time performance on an NPCC 140-bus power system and compared to a quasi-steady-state model embedding transient stability simulation.
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SunView 深度解读
该连锁故障高效仿真技术对阳光电源PowerTitan大型储能系统及ST系列储能变流器的电网支撑功能具有重要价值。文中提出的能量函数嵌入准稳态模型可应用于储能系统的构网型GFM控制策略优化:通过快速评估暂态稳定裕度,储能系统可在电网扰动时动态调整有功/无功输出,预防连锁故障扩散。该方法的计算高效性使其可集成至iSolarCloud云平台,实现大规模新能源场站的实时稳定性监测与预测性控制。对于虚拟同步机VSG技术,该模型可指导惯量与阻尼参数的自适应整定,在保障暂态稳定的前提下提升电网故障穿越能力,增强储能系统在弱电网环境下的并网适应性。