PID control optimization method for vibration system based on grey random differential evolution algorithm
A differential evolution algorithm and vibration system technology, applied in the field of control algorithms, can solve the problems of lack of adaptability of DE algorithm, unsatisfactory vibration control effect, large calculation time and memory consumption, etc., to achieve optimal vibration control effect and improve optimization search capacity, reduced computation-cost effects
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[0101] In order to verify the effectiveness of the PID control optimization method of the vibration system based on the gray stochastic differential evolution algorithm of the present invention, an application example is given here.
[0102] In this example, the gray stochastic differential evolution algorithm is applied to the PID control optimization of the airfoil nonlinear aeroelastic vibration system. A typical airfoil nonlinear aeroelastic system has vibrations in two directions, namely the flapping displacement h and the torsion angle θ. The dynamic equation of the system is:
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[0105] Among them, m T , m w is the quantity related to airfoil quality, x θ is the dimensionless distance between the center of mass and the center of elasticity, b is the half-chord length of the airfoil, I θ is moment of inertia, ρ is air density, U is wind speed, c l,θ , c m,θ is the aerodynamic coefficient corresponding to the angle of attack of the airfoil, c l...
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