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OPTIMAL CONTROL FOR SHAPE AND VIBRATION OF SPACE INTELLIGENT TRUSS STRUCTURE WITH PIEZOELECTRIC ACTUATORS

机译:压电致动器对空间智能桁架结构的形状和振动的最优控制

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The modeling and shape control problem of space intelligent truss structure with piezoelectric actuators (PZT actuators) is studied in this paper. The basic unit of intelligent truss structure is firstly divided into PZT bar element and normal bar element, and their dynamic models are developed respectively. Then, the dynamic model of the structure is reduced using the modal truncation method, and is transformed into the state space form. The target voltage values for the PZT actuators to correct the deformation of the structure are estimated according to the dynamic model. The vibration will be caused during shape correction since the space intelligent truss is inherently flexible. The optimal input voltage profile of PZT actuators is proposed by minimizing vibration amplitude during the shape control and the optimal control problem is solved utilizing the nonlinear programming method. Simulation results are finally provided to illustrate the performance of the proposed model and controller. Using optimal control techniques appears to provide a promising solution to correct the deformed shape of the structure, as well as minimum residual vibration for space intelligent truss structure.
机译:研究了带有压电致动器(PZT致动器)的空间智能桁架结构的建模和形状控制问题。首先将智能桁架结构的基本单元划分为PZT杆单元和法向杆单元,并分别建立其动力学模型。然后,使用模态截断方法简化结构的动力学模型,并将其转换为状态空间形式。根据动态模型估算用于校正结构变形的PZT执行器的目标电压值。由于空间智能桁架具有固有的灵活性,因此会在形状校正过程中引起振动。通过最小化形状控制过程中的振动幅度,提出了PZT执行器的最优输入电压曲线,并利用非线性编程方法解决了最优控制问题。最后提供了仿真结果,以说明所提出的模型和控制器的性能。使用最佳控制技术似乎为纠正结构的变形形状以及最小化空间智能桁架结构的残余振动提供了一种有前途的解决方案。

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