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Active vibration control of an elastically connected double-string continuous system

机译:弹性连接双弦连续系统的主动振动控制

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The paper deals with the optimal control of a distributed host structure consisting of two elastically connected complex continuous double-string system and subjected to certain excitation load. Investigation of the behavior of such system is of great theoretical and practical importance. A technique is proposed to actively damp out the undesired vibrations in the structures by a combination of applied actuators and displacement feedback gains. Two performance measures, involving energies at the terminal time as well as applied and feedback control efforts, are introduced. The optimality conditions of the applied actuators are derived by using the method of eigenfunction expansion and calculus of variations. The feedback parameters are numerically determined from the solution of a minimization problem. The proposed approach is illustrated by a numerical example involving a system which consists of two strings subjected to a continuous load.
机译:本文研究了由两个弹性连接的复杂连续双弦系统组成的分布式主机结构的最优控制,并承受一定的激励载荷。研究这种系统的行为具有重要的理论和实践意义。提出了一种通过组合使用的执行器和位移反馈增益来主动抑制结构中不希望有的振动的技术。介绍了两个性能指标,涉及终端时间的能量以及应用和反馈控制方面的努力。通过使用本征函数展开和微积分的方法得出所应用致动器的最优条件。反馈参数由最小化问题的解决方案通过数值确定。通过一个涉及系统的数值示例说明了所提出的方法,该系统由承受连续负载的两个弦组成。

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