Transient Synchronization Stability Analysis of Voltage Source Converters: A Review

被引:0
作者
Zhang Y. [1 ]
Cai X. [1 ]
Zhang C. [1 ]
Lyu J. [1 ]
Li Y. [2 ]
机构
[1] Laboratory of Control of Power Transmission and Conversion, Shanghai Jiao Tong University, Ministry of Education, Minhang District, Shanghai
[2] State Key Laboratory of HVDC, Electric Power Research Institute, China Southern Power Grid, Guangzhou
来源
Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering | 2021年 / 41卷 / 05期
基金
中国国家自然科学基金;
关键词
Large disturbance; Loss of synchronization; Phase-locked loop; Synchronization mechanism; Synchronization stability; Transient stability; Voltage source converter (VSC);
D O I
10.13334/j.0258-8013.pcsee.201673
中图分类号
学科分类号
摘要
With the increase of the penetration of renewable energy, the influence of grid connected converter on the dynamic and stability of the power grid is becoming severe, such as low inertia and wide-band oscillation. This paper discussed the problem of transient synchronization stability (TSS) which is closely related to the nonlinear dynamics of the synchronization unit of the converters. Firstly, the inherent relationship between the TSS of the VSC and angle stability of synchronous generator (SG) had been revealed by investigating the similarity of synchronization mechanism between VSC and SG. Secondly, the instability mechanism, analysis method and stabilization control regarding the TSS issue had been comprehensively reviewed. Thirdly, the challenge of TSS studying was summarized, the generally application-oriented stabilization method was proposed, and further synchronization issue for future research was prospected. The general method of TSS is concluded in this paper, which provides reference to applications and future research. © 2021 Chin. Soc. for Elec. Eng.
引用
收藏
页码:1687 / 1701
页数:14
相关论文
共 63 条
[41]  
CHEN Junru, LIU Muyang, O'DONNELL T, Et al., Impact of current transients on the synchronization stability assessment of grid-feeding converters, IEEE Transactions on Power Systems, 35, 5, pp. 4131-4134, (2020)
[42]  
ZHANG Chen, MOLINAS M, LI Zheng, Et al., Synchronizing stability analysis and region of attraction estimation of grid-feeding VSCs using sum-of-squares programming, Frontiers in Energy Research, 8, pp. 1-12, (2020)
[43]  
WANG Xiaofan, Nonlinear dynamics and chaos, (2017)
[44]  
WU Heng, WANG Xiongfei, Transient stability impact of the phase-locked loop on grid-connected voltage source converters, Proceedings of the 2018 International Power Electronics Conference (IPEC-Niigata-ECCE Asia), pp. 2673-2680, (2018)
[45]  
MOON Y H, CHOI B K, ROH T H., Estimating the domain of attraction for power systems via a group of damping-reflected energy functions, Automatica, 36, 3, pp. 419-425, (2000)
[46]  
LI Meiyi, HUANG Wentao, TAI Nengling, Et al., Lyapunov-based large signal stability assessment for VSG controlled inverter-interfaced distributed generators, Energies, 11, 9, pp. 2273-2281, (2018)
[47]  
CHENG Huijie, SHUAI Zhikang, SHEN Chao, Et al., Transient angle stability of paralleled synchronous and virtual synchronous generators in islanded microgrids, IEEE Transactions on Power Electronics, 35, 8, pp. 8751-8765, (2020)
[48]  
TAUL M G, WANG Xiongfei, DAVARI P, Et al., An overview of assessment methods for synchronization stability of grid-connected converters under severe symmetrical grid faults, IEEE Transactions on Power Electronics, 34, 10, pp. 9655-9670, (2019)
[49]  
HE Xiuqiang, GENG Hua, MA Shaokang, Transient stability analysis of grid-tied converters considering PLL's nonlinearity, CPSS Transactions on Power Electronics and Applications, 4, 1, pp. 40-49, (2019)
[50]  
SUUL J A, D'ARCO S, RODRIGUEZ P, Et al., Impedance-compensated grid synchronisation for extending the stability range of weak grids with voltage source converters, IET Generation, Transmission & Distribution, 10, 6, pp. 1315-1326, (2016)