Corrected complex torque coefficient method for synchronization stability analysis of grid‐connected VSC

Author:

Zhao Boyuan1ORCID,Chen Lei1,Min Yong1,Li Yalou2,Xu Shiyun2

Affiliation:

1. Department of Electrical Engineering Tsinghua University Beijing China

2. China Electric Power Research Institute Beijing China

Abstract

AbstractSub‐synchronous oscillation of grid‐connected voltage source converter (VSC) dominated by phase locked loop (PLL) is an important stability issue in nowadays power systems. The complex torque coefficient method has been used to investigate the issue because of its advantage of giving insights into source of damping and contributions of different components on damping. However, it is found that the classic complex torque coefficient method is not entirely applicable for stability analysis of VSC because of the proportional term in PLL. This paper proposes a corrected complex torque coefficient method and defines synchronous and damping coefficients. Based on the proposed method, a small‐signal stability criterion is obtained, in which the system stability depends on the sign of corrected damping coefficient. The impacts of different elements on system damping can be quantitatively evaluated through the method. It is drawn that current control loop and line dynamics contribute negative damping, whereas power control loop contributes positive damping. Moreover, the impacts of operating conditions and controller parameters on damping of different elements are analysed. The eigenvalue analyses and electromagnetic transient simulations have verified the theoretical analysis.

Funder

National Natural Science Foundation of China

Publisher

Institution of Engineering and Technology (IET)

Subject

Renewable Energy, Sustainability and the Environment

Reference27 articles.

1. Synchronization stability analysis of PLL‐based grid‐connected VSC system by voltage space vectors;Sun H.;CSEE J. Power Energy Syst.,2023

2. Impedance‐based prediction of distortions generated by resonance in grid‐connected converters;Shah S.;IEEE Trans. Energy Convers.,2019

3. Analysis and damping control of small‐signal oscillations for VSC connected to weak AC grid during LVRT;Wang X.;IEEE Trans. Energy Convers.,2019

4. Symmetric admittance modeling for stability analysis of grid‐connected converters;Xu L.;IEEE Trans. Energy Convers.,2020

5. Theoretical analysis on the VSC instability caused by PLL in weak system;Li B.;IET Renewable Power Gener.,2020

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