Study on the mechanism of interaction between thermal power units on subsynchrouns oscillation

Autor: ZANG Dechun, ZHAO Rongzhen, YANG Chao, ZHU Xinchi
Jazyk: čínština
Rok vydání: 2024
Předmět:
Zdroj: Zhejiang dianli, Vol 43, Iss 2, Pp 25-33 (2024)
Druh dokumentu: article
ISSN: 1007-1881
DOI: 10.19585/j.zjdl.202402003
Popis: Research findings indicate that in multi-unit systems experiencing subsynchronous oscillations (SSO), the units tend to exhibit similar torsional vibration frequencies. Therefore, an analysis was conducted on the interactive effects among shaft systems of units with similar frequencies, as well as the mechanisms of system series compensation, electrical distances between units. Additionally, the paper delved into the mechanisms through which system series compensation, electrical distances between units, and similar torsional vibration frequencies impact the SSO. Firstly, based on characteristic matrices, the expression for the complex torque coefficients of two parallel thermal power units in the system was derived. Subsequently, the simplified complex torque coefficient method for a single unit was extended to encompass multi-unit systems, resulting in a streamlined expression for the electrical damping of dual thermal power units. The analysis further examined the influence of other units on the damping of the target unit, revealing that series compensation, electrical distances between units, and similar torsional vibration frequencies all exert an influence on system damping and stability. Finally, the mechanisms through which influencing factors affect the subsynchronous stability of the system were validated through numerical examples.
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