Transient stabilized constraint tide optimization process
A technology for power system and transient stability, applied in electrical components, circuit devices, AC network circuits, etc., can solve problems such as insolvability, excessive calculation time, the scale of the correction equation system dimension system and the increase in the number of faults, etc. Achieve the effect of improving algorithm efficiency and ensuring calculation accuracy
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[0025] Consider the power flow optimization problem of power system with multi-prediction fault transient stability constraints in the form of (1):
[0026] obj.minf(x)
[0027] s.t.h(x)=0 (1)
[0028] g min ≤g(x)≤g max
[0029] In the formula, f(x) is the objective function of the optimization problem; h(x) is the equality constraint including the difference equation describing the transient process; g(x) is the inequality constraint g including the transient stability criterion max and g min are the upper and lower bounds of the inequality constraints, respectively.
[0030] The control variables in this optimization problem include the output P of the adjustable active and reactive sources G , Q R And the transformation ratio T of the tap adjustable transformer, the state variables include the real part and imaginary part of the node voltage e, f, the constant potential E′ of the generator, the initial value of the power angle δ 0 , and the power angle and electrica...
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