Effect of the Control of Generators and Turbines on the Transient Stability of a Power System
Elmer Sorrentino, Pamela Villafuerte
Abstract
Elmer Sorrentino, Pamela Villafuerte
Abstract
This article analyzes the effect of the control of generators and turbines on the transient stability of a power system. An example from the literature, whose solution is known without the effect of the control system, was taken as base case. Three standardized models for the control of excitation systems and one simplified model for the speed governor were applied. The main parameters of the control systems were varied, and the results were obtained by using two different generator models (transient/subtransient). The loads were modeled as constant impedances. The results show the transient behavior of the main variables, and the critical clearing times for a specific fault (three-phase bolted fault, at a specific point of one transmission line). In some cases, results show that the critical clearing times are greater when the control systems are included in the simulation, and the opposite occurs in other cases. Therefore, there is no a simple rule about the worst conditions for the simulation.
OpenAlex reports 16 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
This article analyzes the effect of the control of generators and turbines on the transient stability of a power system. An example from the literature, whose solution is known without the effect of the control system, was taken as base case. Three standardized models for the control of excitation systems and one simplified model for the speed governor were applied. The main parameters of the control systems were varied, and the results were obtained by using two different generator models (transient/subtransient). The loads were modeled as constant impedances. The results show the transient behavior of the main variables, and the critical clearing times for a specific fault (three-phase bolted fault, at a specific point of one transmission line). In some cases, results show that the critical clearing times are greater when the control systems are included in the simulation, and the opposite occurs in other cases. Therefore, there is no a simple rule about the worst conditions for the simulation.
Key concepts: Control theory (sociology), Transient (computer programming), Electric power system, Transmission line, Fault (geology), Control system, Engineering, Electric power transmission