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AUTORESONANT HOMEOSTAT CONCEPT FOR ENGINEERING APPLICATION OF NONLINEAR VIBRATION MODES

机译:用于非线性振动模式工程应用的自谐振恒压器概念

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摘要

Analysis of strongly nonlinear systems revealed an existence of nonlinear modes of vibration with spatial and temporal concentration of energy. The modes can be realised, for example, through intensification of the vibration process by condensing the vibration into a sequence of collisions for impulsive action of the tools to the media being treated or can be as a result of some discontinuity (slackening of a contact, arrival of crack etc.) in the structure. The use of the nonlinear modes to develop useful mechanical work leads to necessity of excitation and control of resonance in ill-defined dynamical systems. This is due to the poorly predictable response of the media being treated. Excitation, stabilisation and control of a nonlinear mode at the top intensity in such systems is an engineering challenge and needs a new method of adaptive control for its realisation. Such a control technique was developed with the use of self-exciting mechatronic systems. The excitation of the nonlinear mode in such systems is a result of artificial instability of mechanical system conducted by positive electronic feedback. The instability is controlled by intelligent identification of the mode and active tracing of the optimal relationship between phase shifting and limitation in the feedback circuitry. This method of control is known as autoresonance. Applications of autoresonant control for development of the new machines are described.
机译:对强非线性系统的分析表明,存在具有空间时空能量集中的非线性振动模式。这些模式可以通过以下方式来实现:例如,通过将振动浓缩为一系列碰撞,从而使工具对所处理的介质产生脉冲作用,从而增强振动过程,或者由于某些不连续性(接触松弛,裂缝等)进入结构。使用非线性模式发展有用的机械功导致在不确定的动力学系统中激发和控制共振的必要性。这是由于所处理的介质的可预测性差。在此类系统中,以最高强度激发,稳定和控制非线性模式是一项工程挑战,因此需要一种新的自适应控制方法来实现。这种控制技术是利用自激式机电一体化系统开发的。这种系统中非线性模式的激发是由于正电子反馈导致的机械系统的人为不稳定性的结果。通过模式的智能识别以及反馈电路中相移和限制之间的最佳关系的主动跟踪,可以控制不稳定性。这种控制方法称为自共振。描述了自动共振控制在新机器开发中的应用。

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