Unified AC/DC hybrid admittance modelling and oscillation stability analysis for interlinking voltage source converter system

Author:

Xie Hua1,Zhao Yigang12ORCID,Wu Xiangyu1,Yu Runni1,Xu Yin1,Zhai Suwei3

Affiliation:

1. Beijing Jiaotong University Beijing Beijing China

2. State Grid Shanxi Xinzhou Electric Power Company Xinzhou China

3. Yunnan Electric Power Research Institute Kunming China

Abstract

AbstractThe voltage source converter (VSC) interlinking AC and DC power networks is a core equipment in AC/DC hybrid power systems. To analyze the stability of this system based on the impedance method, it is necessary to establish the hybrid AC/DC admittance model of interlinking VSC. This paper presents a unified and systematic AC/DC hybrid admittance modelling framework which is widely applicable to different control methods of interlinking VSCs. The hybrid admittance models for interlinking VSCs under PQ control, VdcIq control, and Vf control are explicitly formulated, with their elements individually reflecting the dynamics of the AC side, DC side, and the interaction between them. Subsequently, the impedance network model of interlinking VSC systems is formulated based on the hybrid admittance, and furthermore the frequency‐domain modal analysis is performed to analyze the system oscillation stability. Finally, frequency scanning and time‐domain simulation results in MATLAB/Simulink are provided to validate the effectiveness of the modelling and oscillation stability analysis method.

Funder

National Natural Science Foundation of China

Publisher

Institution of Engineering and Technology (IET)

Subject

Renewable Energy, Sustainability and the Environment

Reference27 articles.

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