摘要
对轴向运动弦线和作动器组成的耦合系统的横向振动控制进行研究。此系统被作动器分成未控和受控两部分,通过作用在作动器上的控制力对受控部分进行主动控制。分析未控弦线的横向振动的有界性。采用Lyapunov 方法获得自适应控制规律,并证实受控弦线横向振动的渐近稳定性。在初始扰动和激励力作用下,通过数值仿真证实控制规律的有效性。
Vibration control of an axially moving string system consisting of a controlled span coupled to a tensioner is investigated. The axially moving string system is divided into two spans, i.e. a controlled span and an uncontrolled span, by a tensioner which is located in the middle section of the string. The transverse vibration of the controlled span of the string is controlled by the control force acted on the tensioner, and the constrained point is considered as the right boundary of the controlled span. The adaptive method is employed to design the controlled law for ensuring the vibration reduction of the controlled span, and the asymptotically stability of the closed loop system under the boundary control is proved. Results for the response of the controlled string under initial disturbance and excitations are presented, and the effectiveness of the controller is demonstrated by simulations.
出处
《机械工程学报》
EI
CAS
CSCD
北大核心
2006年第4期96-100,共5页
Journal of Mechanical Engineering
基金
国家自然科学基金(10172056
10472060)上海市自然科学基金(04ZR14058)资助项目
关键词
轴向运动弦线
横向振动
耦合系统
振动控制
自适应
Axially moving string Transverse vibration Coupled system Vibration control Adaptation