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首页> 外文期刊>International Journal of Distributed Sensor Networks >Sensitivity-enhancing feedback control–based damage detection in delaminated smart composite plates
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Sensitivity-enhancing feedback control–based damage detection in delaminated smart composite plates

机译:分层智能复合板中基于灵敏度增强反馈控制的损伤检测

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摘要

In this article, we present a sensitivity-enhancing feedback control–based damage detection method for piezoelectric actuator and sensor bonded composite laminates with delamination failures. The present method mainly consists of two parts: delamination modeling and feedback controller design. We first introduce the adopted improved layerwise theory–based mathematical model for delamination modeling with finite element implementation. The obtained second-order governing equations are transformed into the state space model for design of state feedback controller. Proper pole placement is required to enhance the sensitivity of frequency shifts to stiffness change caused by delamination. We investigated different delamination interfaces and longitudinal locations for studying the feasibility and efficiency of the present method. The present results clearly demonstrate that with the applied state feedback controller, the frequency shifts of the closed-loop system are significantly enhanced. The proposed sensitivity-enhancing feedback control can be used as an efficient tool for detecting delamination failures in smart composite structures.
机译:在本文中,我们提出了一种用于压电执行器和传感器粘结的复合材料层合板而发生分层失败的基于灵敏度增强反馈控制的损伤检测方法。该方法主要由两部分组成:分层建模和反馈控制器设计。我们首先介绍采用改进的基于分层理论的数学模型进行带有有限元实现的分层建模。将获得的二阶控制方程转化为状态空间模型,用于状态反馈控制器的设计。需要适当放置磁极,以增强频移对分层引起的刚度变化的敏感性。我们研究了不同的分层界面和纵向位置,以研究本方法的可行性和效率。目前的结果清楚地表明,通过应用状态反馈控制器,闭环系统的频移得到了显着增强。所提出的提高灵敏度的反馈控制可以用作检测智能复合结构分层失败的有效工具。

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