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Control of relative vibration between flexible appendages using passive and semi-active isolation

机译:使用被动和半主动隔离来控制柔性附件之间的相对振动

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Relative vibration between two flexible subsystems can be detrimental to the performance of many engineering applications, such as optics-based instruments, machine tools, or adjacent industrial structures sharing piping. For the purpose of controlling this particular vibration, this paper presents two control approaches based on the passive and semi-active isolation at each subsystem: the indirect control method, consisting in the reduction of the individual vibration of each subsystem, and the direct control method, which aims to reduce the relative vibration between both subsystems. Necessary conditions for the feasibility of the direct control method are found, thereby reducing the universe of possible design configurations. From the traditional ground-hook and sky-hook control laws, which simulate, respectively, a damper between the body to be controlled and the support or the reference framework, it is generalized a control law called body-hook-body, which simulates a damper between both bodies to be controlled. Taking into account the performance and cost/complexity of the whole system, different alternatives for each vibration control method are numerically and experimentally studied. From the results, it is inferred that the proposed direct control method, using body-hook-body, is as effective as the traditional indirect control method, using ground-hook or sky-hook, but with lower cost and complexity. (C) 2017 Elsevier Ltd. All rights reserved.
机译:两个柔性子系统之间的相对振动可能会损害许多工程应用程序的性能,例如基于光学的仪器,机床或共享管道的相邻工业结构。为了控制这种特定的振动,本文提出了基于每个子系统的被动和半主动隔离的两种控制方法:间接控制方法(包括减少每个子系统的个体振动)和直接控制方法。 ,旨在减少两个子系统之间的相对振动。找到了直接控制方法可行性的必要条件,从而减少了可能的设计配置范围。传统的地钩和天钩控制定律分别模拟了要控制的物体与支撑或参考框架之间的阻尼器,因此推广了一种称为“体钩-物体”的控制律,该控制律模拟了两个主体之间的风门要控制。考虑到整个系统的性能和成本/复杂性,对每种振动控制方法的不同替代方案进行了数值和实验研究。从结果可以推断,所提出的直接控制方法,使用钩体-钩体,与使用地面钩或天钩的传统间接控制方法一样有效,但成本和复杂性较低。 (C)2017 Elsevier Ltd.保留所有权利。

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