Development of a reclosing scheme for reduction of turbine generator shaft torsional torques: A decision method to achieve optimal reactor capacity

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Abstract

It is well known that line switching operations like reclosing are able to cause transient power oscillations which can stress or damage turbine generators. This paper presents a reclosing scheme to reduce the shaft torsional torques of turbine generators by inserting an additional reactor. A novel method to determine optimal reactor capacity to minimize the torsional torque generated in a turbine generator is also proposed. In this paper, the turbine generator shaft is represented by a multi-mass model to measure torsional torques generated in the shaft between the turbine and the generator. Transmission systems based on actual data from Korea are modeled to verify the proposed scheme using ElectroMagnetic Transient Program (EMTP) software. The simulation results clearly show the effectiveness of the proposed scheme and torsional torque can be minimized by applying the proposed scheme.

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APA

Oh, Y. S., Seo, H. C., Yang, J. J., & Kim, C. H. (2014). Development of a reclosing scheme for reduction of turbine generator shaft torsional torques: A decision method to achieve optimal reactor capacity. Journal of Electrical Engineering and Technology, 9(4), 1145–1153. https://doi.org/10.5370/JEET.2014.9.4.1145

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