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EE-470: Power systems dynamics
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Lectures in this course (13)
Power Systems Dynamics
Explores power systems dynamics, covering voltage stability, angular stability, and frequency control.
Power Systems Dynamics
Explores power systems elements, load flow calculations, and iterative solution methods.
Power Systems Dynamics
Covers transient stability, power flow analysis, and load flow methods in power systems.
Power Systems Dynamics: Stability and Behavior
Explores transient stability in power systems, covering synchronous machine synchronism after disturbances, voltage stability, and power flow calculations.
Power Systems Dynamics: Transient Stability
Explores transient stability in power systems dynamics, covering algebraic equations, generator models, and numerical integration techniques.
Numerical Integration: Trapezoidal Rule
Covers numerical integration methods, focusing on the trapezoidal rule and iterative processes.
Power Systems Dynamics: Transient Stability
Explores transient stability in power systems, analyzing generator behavior during faults and emphasizing system stability.
Power Systems Dynamics: Stability Analysis
Covers the analysis of power systems dynamics with a focus on stability.
Transient Stability in Power Systems
Explores transient stability in power systems, analyzing stability during prefault, fault, and postfault states.
Transient Stability in Power Systems
Explores transient stability in power systems, emphasizing critical parameters and methods to enhance system stability.
Small Signal Stability in Power Systems
Explores small signal stability in power systems and the impact of excitation control.
Rotor Oscillation Modes and Excitation Control
Discusses rotor oscillation modes, excitation control effects, and system stability implications.
Power Systems Dynamics: Long Term Stability
Explores long term stability in power systems, covering primary and secondary frequency control and speed-droop characteristics.
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