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Mechatronic Design Quotient Approach in Beam Vibration Suppression Design using Linear Dampers

机译:使用线性阻尼器梁振动抑制设计中的机电调整设计商法

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In using linear dampers for the vibration suppression of flexible structures, their mounting locations and the damping coefficients have to be chosen properly. In this paper, an approach based on the mechatronic design quotient (MDQ) is presented for the optimal design of linear dampers in the vibration control of flexible beams. This approach strives to make the optimal concurrent design of the dampers achieve the performance of an optimal sequential design of uncoupled subsystems as closely as possible. The MDQ approach provides a practical way to evaluate the performance of multi-criteria design. It also provides an insight into the performance degradation of various subsystems due to the dynamic coupling effects in the overall system. The results show that the optimal linear dampers designed using the MDQ approach can achieve the performance of an optimal active controller.
机译:在使用线性阻尼器用于柔性结构的振动抑制,必须适当地选择它们的安装位置和阻尼系数。本文介绍了一种基于机电设计商(MDQ)的方法,用于柔性梁振动控制中的线性阻尼器的最佳设计。这种方法努力使阻尼器的最佳并发设计实现尽可能地尽可能地地实现未耦合的子系统的最佳顺序设计的性能。 MDQ方法提供了评估多标准设计性能的实用方法。由于整个系统中的动态耦合效应,它还提供了对各个子系统的性能下降的见解。结果表明,使用MDQ方法设计的最优线性阻尼器可以实现最佳活性控制器的性能。

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