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Chaos controlling and anticontrolling problems for the mechanical centrifugal flywheel governor systems

机译:机械离心机飞轮调速器系统的混沌控制和反向控制问题

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The complex dynamics characters of the mechanical centrifugal flywheel governor system are studied. The dynamical equation and the state equation of the mechanical centrifugal flywheel governor system are established according to Lagrangian equations. By the phase portraits, the motions of the nonautonomous system are studied under the definite parameters. And by Poincare map, the route from periodic motion to chaos is studied under the presented system parameters. An adaptive differential feedback is constructed to control the chaos of the mechanical centrifugal flywheel governor system. The chaos of the system is controlled via x |x|, too. And the periodic motion of the system is anticontrolled to chaotic motion by add a linear feedback item. The phase portraits of the controlled and anticontrolled system are obtained. The advantages of the two controlled methods are that the collect of the control signals are simple and can put on any time and the chaotic system can be asymptotically stabilized to equilibriums with small control, and the control disturbance will tend to zero at the same time. Chaos anticontrolling is helpful to make a non-chaotic dynamical system chaotic. The orbits of the system can be controlled by these three methods according to our target.
机译:研究了机械离心飞轮调速器系统的复杂动态特征。根据拉格朗日方程式建立了机械离心飞轮调速系统的动态方程和状态等式。通过相位肖像,在确定的参数下研究了非自来组织系统的运动。通过Poincare地图,在所提出的系统参数下研究了从周期性运动到混乱的路线。构造自适应差分反馈以控制机械离心飞轮调速器系统的混沌。系统的混乱是通过x | x |控制的。并且通过添加线性反馈项目,对系统的周期性运动被反应到混沌运动。获得了受控和抗混沌系统的相位肖像。两个受控方法的优点是控制信号的收集很简单,可以随时置于混沌系统,并且混沌系统可以渐近稳定,以较小控制的平衡,并且控制干扰同时趋于零。 Chaos antiontrolling有助于使非混乱动态系统混乱。系统的轨道可以根据我们的目标通过这三种方法控制。

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