Investigation on damping mechanism of machine‐side dynamics of permanent magnet synchronous generator‐based wind generation system

Author:

Zhou Xianyu1,Bu Siqi12345ORCID,Zhou Bowen67ORCID,Yang Dongsheng67ORCID,Meegahapola Lasantha8ORCID

Affiliation:

1. Department of Electrical and Electronic Engineering The Hong Kong Polytechnic University Kowloon Hong Kong

2. Shenzhen Research Institute The Hong Kong Polytechnic University Shenzhen China

3. Research Institute for Smart Energy The Hong Kong Polytechnic University Kowloon Hong Kong

4. Centre for Grid Modernisation The Hong Kong Polytechnic University Kowloon Hong Kong

5. International Centre of Urban Energy Nexus The Hong Kong Polytechnic University Kowloon Hong Kong

6. College of Information Science and Engineering Northeastern University Shenyang China

7. Key Laboratory of Integrated Energy Optimization and Secure Operation of Liaoning Province Northeastern University Shenyang China

8. School of Engineering RMIT University Melbourne Victoria Australia

Abstract

AbstractA permanent magnet synchronous generator‐based wind generation system has been predominantly applied in wind farms. With the wide application of wind generation, mechanical shafting attracts wide attention as torsional vibration problems may occur in its mechanical rotational system, which can further affect the power system. The paper first intentionally designs a two‐open‐loop two‐mass shaft subsystem model to investigate the interactions among wind turbine mass, generator mass, and machine‐side converter, that is, the machine‐side dynamics. Then, a bilateral damping contribution analysis is proposed to investigate the damping mechanism of these machine‐side dynamics. The impact mechanism of one dynamic on another through the damping contribution channel can be revealed by modal analysis, indicating the coupling of different oscillation modes and the complex interactions of machine‐side dynamics. The established two‐open‐loop two‐mass shaft subsystem model and the proposed bilateral damping contribution analysis with the identified damping contribution channel of the permanent magnet synchronous generator‐based wind generation system are validated.

Publisher

Institution of Engineering and Technology (IET)

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Information Systems

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