The characteristics and application of Thyristor controlled reactance Series Compensation by adjustable coupling
Guorong Zhu, Yong Kang, Jian Chen, Fang Luo, Min-zu Li
Abstract
Guorong Zhu, Yong Kang, Jian Chen, Fang Luo, Min-zu Li
Abstract
This paper presents the characteristics of the Thyristor Controlled Series Compensation by Adjustable Coupling, deduces the adjustable reactance formula considering leakage reactance, and presents a fast and effective power regulation algorithm with offline regulation according to the characteristics of the step regulation of reactance by adjustable coupling. In transient stability control process, this paper introduces additional variable Δω and variable gain approach to increase the damp of the system remarkably. With dynamic simulation test system as the background, and according to the new reactance formula, a 21-step Thyristor Controlled Reactance by Adjustable Coupling device is designed. Besides, power regulation and transient stability control with practically adjustable reactance are simulated according to the above approach. The result shows that this device has better regulation performance.
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This paper presents the characteristics of the Thyristor Controlled Series Compensation by Adjustable Coupling, deduces the adjustable reactance formula considering leakage reactance, and presents a fast and effective power regulation algorithm with offline regulation according to the characteristics of the step regulation of reactance by adjustable coupling. In transient stability control process, this paper introduces additional variable Δω and variable gain approach to increase the damp of the system remarkably. With dynamic simulation test system as the background, and according to the new reactance formula, a 21-step Thyristor Controlled Reactance by Adjustable Coupling device is designed. Besides, power regulation and transient stability control with practically adjustable reactance are simulated according to the above approach. The result shows that this device has better regulation performance.
Key concepts: Reactance, Thyristor, Control theory (sociology), Compensation (psychology), Transient (computer programming), Coupling (piping), Engineering, Electric power system