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基于先进交流潮流的级联故障仿真方法以解决电压问题
Advanced AC Power Flow-Based Cascading Outage Simulation Method to Address Voltage Issues
| 作者 | Moossa Khodadadi Arpanahi · Florin Capitanescu |
| 期刊 | IEEE Transactions on Power Systems |
| 出版日期 | 2025年8月 |
| 卷/期 | 第 41 卷 第 1 期 |
| 技术分类 | 系统并网技术 |
| 技术标签 | 低电压穿越LVRT 弱电网并网 跟网型GFL 构网型GFM |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 |
语言:
中文摘要
本文针对AC潮流在级联故障仿真中因电压失稳导致发散、无法模拟欠压负荷切除及感应电机低压堵转/脱网等问题,提出融合短期负荷特性、详细电机模型与欠压保护交互的快速仿真方法,并支持孤岛、频率等动态特征建模,在IEEE-39系统验证有效,可扩展至9241节点大系统。
English Abstract
This paper addresses two key voltage issues in cascading outages simulation based on the widely used AC power flow model. First, the main unsolved flaw affecting the simulation continuation and accuracy of cascading outages is the divergence of conventional AC power flow, caused mainly by voltage instability. This divergence further prevents capturing the operation of undervoltage load shedding protection. Second, AC power flow cannot capture the stalling and disconnection at low voltages of induction motors, the main load in power systems. To overcome these issues, a new fast method for AC power flow-based cascading outages simulation is proposed. It enables computing some relevant points of the power system trajectory by combining: (i) the extension of the simulation model to short-term operation, based on load short-term characteristic, (ii) detailed model of induction motors, and (iii) the inclusion of the interplay of these two models with the specific operation of under-voltage load shedding. To enhance accuracy, the proposed simulator also models other typical features like islanding and frequency issues. Compared to existing methods, the numerical results show the importance and effectiveness of each new aspect of the method. Dynamic simulation validates the accuracy of the proposed simulator on the IEEE-39 bus system, widely used for both cascading outages and dynamic simulation. The method is scalable to large power systems, e.g. of 9,241 buses.
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SunView 深度解读
该研究对阳光电源ST系列PCS、PowerTitan储能系统在弱电网/故障穿越场景下的电压支撑策略和保护协同具有重要参考价值。其提出的欠压负荷切除与感应电机动态耦合建模方法,可优化PCS的LVRT/HVRT控制逻辑及构网型(GFM)模式下的暂态响应。建议将相关电压轨迹预测与保护联动机制融入iSolarCloud智能平台,提升光储电站对级联故障的主动防御能力。