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Integrated optimization of structure and control for piezoelectric intelligent trusses with uncertain placement of actuators and sensors

机译:压电智能桁架的结构和控制的集成优化,其中执行器和传感器的位置不确定

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摘要

The finite element modeling of truss structures with piezoelectric members is presented. Based on the approach of independent modal space control, the controllability and observability indices of the system related to the positions of actuators/sensors are demonstrated. Consequently, the effective damping response time is evaluated. The object of the optimization model is to minimize a specified performance index of the intelligent truss subjected to constraints on the natural frequency and the amplitude of displacement response as well as the applied voltages under a given disturbance. Structural sizing variables, control parameters and actuator/sensor placements are treated as the independent design variables. Coding, the calculation of fitness and the optimization procedure of Genetic Algorithms are discussed so as to solve the integrated optimization with two different types of design variable space: discrete and continuous. Numerical examples are presented to show the effectiveness and usefulness of integrated optimization of structure and control for piezoelectric intelligent trusses.
机译:提出了具有压电构件的桁架结构的有限元建模。基于独立模态空间控制的方法,论证了与执行器/传感器位置有关的系统的可控性和可观测性指标。因此,评估了有效的阻尼响应时间。优化模型的目的是使智能桁架的指定性能指标最小,该指标受固有频率和位移响应幅度以及在给定干扰下施加的电压的约束。结构尺寸变量,控制参数和执行器/传感器位置被视为独立的设计变量。讨论了编码,适应度计算和遗传算法的优化过程,以解决两种不同类型的设计变量空间(离散和连续)的集成优化。数值算例表明了压电智能桁架结构与控制集成优化的有效性和实用性。

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