Dynamic Short Circuit Ratio for Stability Assessment of Grid Connected VSC-HVDC Systems Considering the Impact of Time-Varying Phase Shift

被引:0
|
作者
Li, Dongdong [1 ]
Sun, Mengxian [1 ]
Mi, Yang [1 ]
Zhao, Yao [1 ]
Gao, Yi [1 ]
机构
[1] Shanghai Univ Elect Power, Sch Elect Engn, Shanghai 200090, Peoples R China
基金
中国国家自然科学基金;
关键词
Power system stability; Circuit stability; Asymptotic stability; Stability criteria; Time-varying systems; Integrated circuit modeling; Analytical models; Short circuit ratio; dynamic stability; input to state stability; grid connected VSC-HVDC system; ORNSTEIN-UHLENBECK PROCESS; ONLINE ESTIMATION; INERTIA; SIMULATION; FREQUENCY;
D O I
10.1109/TPWRS.2023.3244788
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
As more renewable resources are integrated into the receiving-end AC grid through VSC-HVDC, the grid connected VSC-HVDC system is facing a critical dynamic stability issue involving multiple-frequency oscillatory behaviors, which mainly stems from the low-system-strength and the time-varying phase shift. This paper proposes a general stability analysis method to measure the dynamic stability of grid connected VSC-HVDC system from the point of view of input to state stability (ISS). A nonlinear time-varying discrete-time state space model ((NTDSM)-M-2) of the grid connected VSC-HVDC system is built considering the impact of the time-varying phase shift. Then, the (NTDSM)-M-2 is decomposed into several interconnected subsystems. The general asymptotic gain matrix (GAGM), whose elements are derived from the proposed dissipative-form sum-type inequalities (DSIs), is constructed to quantify the interactions between multiple subsystems. Finally, a general dynamic stability analysis index, called dynamic short circuit ratio (DSCR), is proposed to effectively explain the critical dynamic instability point of the grid connected VSC-HVDC system, based on the spectral radius property of the GAGM. Moreover, the real-time simulations and multiple comparative studies are implemented in this paper to verify the effectiveness of the proposed (NTDSM)-M-2 and stability analysis method by using RT-LAB platform.
引用
收藏
页码:976 / 989
页数:14
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