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Topology Optimization-based Distribution Design Of Actuation Voltage In Static Shape Control Of Plates

机译:板静态形状控制中基于拓扑优化的驱动电压分布设计

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This paper investigates the optimal spatial distribution of single-channel actuation voltage in static structural shape control problem. It is pointed out that single-channel actuation voltage input for shape control applications is of practical importance due to its ease of implementation. The Mindlin plate theory is used in the finite element modeling of laminates with piezoelectric layers. The optimal distribution of the single-channel actuation voltage is formulated as a discrete optimization problem with tri-level design variables, where a least-square function measuring the structural shape error is to be minimized under a constraint on the control effort. Such a problem is then transformed into a continuous one by introducing element-wise artificial design variables defining the topological feature of the control voltage distribution. A power-law function relating the design variables and the applied voltages is proposed to penalize intermediate values of the design variables. Based on the sensitivity analysis, the problem is solved effectively using the MMA algorithm tailored for constrained least-square problems. Numerical examples presented demonstrate the validity of the proposed problem formulation and numerical approaches.
机译:本文研究静态结构形状控制问题中单通道激励电压的最佳空间分布。要指出的是,用于形状控制应用的单通道激励电压输入由于其易于实现而具有实际重要性。 Mindlin板理论用于具有压电层的层压板的有限元建模。将单通道激励电压的最佳分布公式化为具有三级设计变量的离散优化问题,其中在控制作用力的约束下,最小化测量结构形状误差的最小二乘函数。然后,通过引入定义控制电压分布的拓扑特征的逐元素人工设计变量,将这一问题转变为一个连续的问题。提出了与设计变量和施加电压相关的幂律函数,以惩罚设计变量的中间值。基于敏感性分析,可使用针对约束最小二乘问题量身定制的MMA算法有效解决该问题。给出的数值示例证明了提出的问题公式和数值方法的有效性。

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