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Chapter 31

Transient Stability and System Controls

Swing 方程式
Swing 方程式
The Swing Equation is crucial for understanding the dynamics of generating units, such as a three-phase synchronous generator. It describes rotor motion ...
简化的同步电机模型
简化的同步电机模型
The Synchronous Machine Model is crucial in transient stability studies. It represents a synchronous machine with a constant internal voltage behind its ...
多机稳定性
多机稳定性
In an N-bus power system with M synchronous machines, loads are modeled as constant admittances, and network nodal equations are formulated. The ...
风力涡轮机模型
风力涡轮机模型
There are four types of wind turbines. Types 1 and 2 are induction machine models, where stator windings induce AC rotor currents via relative motion ...
发电机电压控制
发电机电压控制
In synchronous generators, the exciter delivers DC power to the rotor's field winding. Older models use a rotor-driven DC generator as the exciter, ...
涡轮调速器控制
涡轮调速器控制
Turbine-generator units in power systems store kinetic energy due to their rotation, which is released when the load increases. The electrical torque of ...
负载频率控制
负载频率控制
In sudden power surges, load-frequency control stabilizes the grid. LFC's goals are to nullify steady-state frequency error after load changes and ...
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