首页> 外文会议>Conference on Smart Structures and Materials 2001: Smart Structures and Integrated Systems Mar 5-8, 2001, Newport Beach, USA >Active Vibration Control of Composite Shell Structure using Modal Sensor/Actuator System
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Active Vibration Control of Composite Shell Structure using Modal Sensor/Actuator System

机译:使用模态传感器/执行器系统的复合材料壳体结构主动振动控制

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摘要

The active vibration control of composite shell structure has been performed with the optimized sensor/actuator system. For the design of sensor/actuator system, a method based on finite element technique is developed. The nine-node Mindlin shell element has been used for modeling the integrated system of laminated composite shell with PVDF sensor/actuator. The distributed selective modal sensor/actuator system is established to prevent the effect of spillover. Electrode patterns and lamination angles of sensor/actuator are optimized using genetic algorithm. Continuous electrode patterns are discretized according to finite element mesh, and orientation angle is encoded into discrete values using binary string. Sensor is designed to minimize the observation spillover, and actuator is designed to minimize the system energy of the control modes under a given initial condition. Modal sensor/actuator for the first and the second mode vibration control of singly curved cantilevered composite shell structure are designed with the method developed on the finite element method and optimization. For verification, the experimental test of the active vibration control is performed for the composite shell structure. Discrete LQG method is used as a control law.
机译:复合壳体结构的主动振动控制已通过优化的传感器/执行器系统执行。为了设计传感器/执行器系统,提出了一种基于有限元技术的方法。九节点Mindlin壳单元已用于对带有PVDF传感器/执行器的层压复合壳的集成系统进行建模。建立分布式选择性模式传感器/执行器系统是为了防止溢出的影响。使用遗传算法优化传感器/执行器的电极图案和层压角度。根据有限元网格离散化连续电极图案,并使用二进制字符串将取向角编码为离散值。传感器旨在最大程度地减少观测溢出,致动器旨在最大程度地降低给定初始条件下控制模式的系统能量。采用有限元方法开发并优化了方法,设计了单曲悬臂复合壳体结构第一,第二模式振动控制的模态传感器/执行器。为了验证,对复合壳结构进行了主动振动控制的实验测试。离散LQG方法用作控制律。

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