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Systemic optimization of an active vibration micro-isolator: An interval computation and constraint propagation based approach

机译:主动振动微型隔振器的系统优化:基于区间计算和约束传播的方法

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This paper is concerned with the optimization of an active vibration micro-isolator. The process is applied to the whole system including the passive structure, the piezoelectric transducers, the electrical interfaces and the controller. An efficient optimization algorithm based on an interval computation method is used. The authors' general objective is to include and develop an early optimization step in the systemic design process of a smart structure. For this purpose, an analytic mathematical model is built, which describes the analytic equations of motion of the main controlled natural mode shape of the micro-isolator. Basically, the method is applicable to a large scale of systems if an analytic description is developed. As case study, the controller and the passive structure are simultaneously optimized so as to obtain a compromise between transmissibility, control energy level and beam strength. The first results obtained are relevant.
机译:本文涉及有源振动微型隔振器的优化。该过程应用于整个系统,包括无源结构,压电换能器,电接口和控制器。使用了一种基于区间计算方法的高效优化算法。作者的总体目标是在智能结构的系统设计过程中包括并开发早期的优化步骤。为此,建立了一个解析数学模型,该模型描述了微隔离器的主要受控自然模式形状的运动解析方程。基本上,如果开发了解析描述,则该方法适用于大规模系统。作为案例研究,同时优化了控制器和无源结构,以便在透射率,控制能级和光束强度之间取得折中。获得的第一个结果是相关的。

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