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首页> 外文期刊>Journal of Sound and Vibration >Vibration confinement and energy harvesting in flexible structures using collocated absorbers and piezoelectric devices
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Vibration confinement and energy harvesting in flexible structures using collocated absorbers and piezoelectric devices

机译:使用并置的吸收器和压电装置的柔性结构中的振动限制和能量收集

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We propose an optimal design for supplementing flexible structures with a set of absorbers and piezoelectric devices for vibration confinement and energy harvesting. We assume that the original structure is sensitive to vibrations and that the absorbers are the elements where the vibration energy is confined and then harvested by means of piezoelectric devices. The design of the additional mechanical and electrical components is formulated as a dynamic optimization problem in which the objective function is the total energy of the uncontrolled structure. The locations, masses, stiffnesses, and damping coefficients of these absorbers and capacitances, load resistances, and electromechanical coupling coefficients are optimized to minimize the total energy of the structure. We use the Galerkin procedure to discretize the equations of motion that describe the coupled dynamics of the flexible structure and the added absorbers and harvesting devices. We develop a numerical code that determines the unknown parameters of a pre-specified set of absorbers and harvesting components. We input a set of initial values for these parameters, and the code updates them while minimizing the total energy in the uncontrolled structure. To illustrate the proposed design, we consider a simply supported beam with harmonic external excitations. Here, we consider two possible configurations for each of the additional piezoelectric devices, either embedded between the structure and the absorbers or between the ground and absorbers. We present simulations of the harvested power and associated voltage for each pair of collocated absorber and piezoelectric device. The simulated responses of the beam show that its energy is confined and harvested simultaneously.
机译:我们提出了一种优化设计,以补充用于振动限制和能量收集的一组吸收器和压电装置来补充柔性结构。我们假设原始结构对振动敏感,并且吸收器是限制振动能量然后通过压电设备收集振动能量的元素。附加机械和电气组件的设计被公式化为动态优化问题,其中目标函数是不受控制的结构的总能量。这些吸收器的位置,质量,刚度和阻尼系数以及电容,负载电阻和机电耦合系数都经过了优化,以使结构的总能量最小化。我们使用Galerkin程序离散化运动方程,该运动方程描述了柔性结构以及添加的吸收器和收割装置的耦合动力学。我们开发了一个数字代码,用于确定一组预定的吸收器和收割组件的未知参数。我们为这些参数输入一组初始值,然后代码对其进行更新,同时将不受控制的结构中的总能量降至最低。为了说明所提出的设计,我们考虑了带有简谐外部激励的简支梁。在这里,我们为每个附加压电器件考虑两种可能的配置,要么嵌入在结构与吸收体之间,要么嵌入在地面与吸收体之间。我们对每对并置的吸收器和压电器件的收割功率和相关电压进行仿真。光束的模拟响应表明,光束的能量受到限制并同时被捕获。

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