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Development of a lab view based controller for active vibration control of panel structures using piezo-electric wafers

机译:基于实验室视图的基于实验室视图的控制器,用于使用压电晶片的面板结构的主动振动控制

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This paper deals with the viability of using piezoelectric actuators to control the flexural oscillations of large centiliter type structures in space by implementing lab view program based PID control algorithm is to be investigated in the present work. Flexural oscillations are excited by impulsive loads such as stage separations of the rocket. The unwanted/ excessive vibratory response can induce fatigue damages in the subassemblies of the launch vehicle. Piezoelectric actuators have the exerting localized bending moments. In this way, vibration can be controlled without exciting rigid body in the structure. The piezo electric actuators are used in collocated sensor/driver pairs to form a feedback control system. The sensor produces a charge that is proportional to the dynamic stress at the sensor location and the driver produces the vibration that is proportional to the voltage applied to it. The analog control system amplifies and phase shifts the accelerometer response to produce the voltage signal that is applied to the driver. A simulated free-free cantilever beam has been integrated with instruments as a distribution of piezoelectric sensor/drivers to carry out the tests, the estimated and measured vibration control compares favorably.
机译:本文通过实施基于实验室视图程序的PID控制算法来控制使用压电致动器控制空间中的大型中心型结构的弯曲振荡的可生存能力。弯曲振荡是通过脉冲载荷的激发,例如火箭的阶段分离。不需要的/过量的振动反应可以诱导发射车辆的子组件中的疲劳损坏。压电致动器具有施加局部弯曲的时刻。以这种方式,可以控制振动而不激动结构中的刚体。压电致动器用于搭配传感器/驾驶员对,形成反馈控制系统。传感器产生与传感器位置处的动态应力成比例的电荷,并且驱动器产生与施加的电压成比例的振动。模拟控制系统放大和相位移动加速度计响应以产生施加到驾驶员的电压信号。模拟的自由悬臂梁已经与仪器集成为压电传感器/驱动器的分布,以执行测试,估计和测量的振动控制有利地进行了比较。

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