Multi-Swing Transient Stability of Synchronous Generators and IBR Combined Generation Systems

IF 7.2 1区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Power Systems Pub Date : 2024-09-12 DOI:10.1109/TPWRS.2024.3460421
Songhao Yang;Bingfang Li;Zhiguo Hao;Yiwen Hu;Huan Xie;Tianqi Zhao;Baohui Zhang
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Abstract

In traditional views, the build-up of accelerating energy during faults can cause the well-known first-swing angle instability in synchronous generators (SGs). Interestingly, this letter presents a new insight that the accumulation of decelerating energy due to the low voltage ride-through (LVRT) and recovery control of grid-following inverter-based resources (GFL-IBRs), might also result in transient angle instability in SGs. The transient energy accumulated during angle-decreasing swing transforms into the acceleration energy of the subsequent swing, hence such phenomena often manifest as multi-swing instability. Both theoretical analysis and simulation support these findings.
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同步发电机和 IBR 联合发电系统的多摆动暂态稳定性
在传统观点中,故障期间加速能量的积累可能导致同步发电机(SGs)的第一摆角不稳定。有趣的是,这封信提出了一个新的见解,即由于低电压穿越(LVRT)和基于电网跟随逆变器的资源(GFL-IBRs)的恢复控制而产生的减速能量积累也可能导致SGs的瞬态角度不稳定。减角摆动过程中积累的瞬态能量转化为后续摆动的加速度能量,因此这种现象常表现为多摆失稳。理论分析和模拟都支持这些发现。
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来源期刊
IEEE Transactions on Power Systems
IEEE Transactions on Power Systems 工程技术-工程:电子与电气
CiteScore
15.80
自引率
7.60%
发文量
696
审稿时长
3 months
期刊介绍: The scope of IEEE Transactions on Power Systems covers the education, analysis, operation, planning, and economics of electric generation, transmission, and distribution systems for general industrial, commercial, public, and domestic consumption, including the interaction with multi-energy carriers. The focus of this transactions is the power system from a systems viewpoint instead of components of the system. It has five (5) key areas within its scope with several technical topics within each area. These areas are: (1) Power Engineering Education, (2) Power System Analysis, Computing, and Economics, (3) Power System Dynamic Performance, (4) Power System Operations, and (5) Power System Planning and Implementation.
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