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首页> 外文期刊>Engineering Optimization >INTEGRATED STRUCTURE AND CONTROL DESIGN OF ACTIVELY CONTROLLED STRUCTURES USING SUBSTRUCTURE DECOMPOSITION
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INTEGRATED STRUCTURE AND CONTROL DESIGN OF ACTIVELY CONTROLLED STRUCTURES USING SUBSTRUCTURE DECOMPOSITION

机译:子结构分解的主动控制结构综合结构与控制设计

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This paper presents a substructuring based approach to the combined structure and control system design problem for flexible space structures. The proposed approach involves decomposing the structure to be controlled into a number of substructures. The substructure information obtained through finite element analysis is synthesized to reconstruct a reduced order model for the entire structure. Two approaches for controller design based on linear quadratic regulator (LQR) theory are proposed. The first approach involves designing a controller for the entire structure obtained by assembling individual substructures. For the second approach, the global controller is obtained by assembling all subcontrollers designed at the substructure level. The integrated control/structure design problem is solved iteratively until a minimum weight design is achieved. A numerical example which compares the results obtained from both the methods with those obtained by directly synthesizing a global controller for the entire structure is presented. The results indicate that both methods proposed herein provide good agreement with the results obtained by analyzing the structure in its entirety.
机译:本文针对柔性空间结构的组合结构和控制系统设计问题,提出了一种基于子结构的方法。所提出的方法涉及将要控制的结构分解为许多子结构。合成通过有限元分析获得的子结构信息,以重建整个结构的降阶模型。提出了两种基于线性二次调节器(LQR)理论的控制器设计方法。第一种方法涉及为通过组装单个子结构而获得的整个结构设计控制器。对于第二种方法,全局控制器是通过组装在子结构级别设计的所有子控制器获得的。迭代地解决了集成的控制/结构设计问题,直到实现最小重量的设计为止。给出了一个数值示例,将两种方法的结果与通过直接合成整个结构的全局控制器获得的结果进行比较。结果表明,本文提出的两种方法均与通过整体分析结构获得的结果良好吻合。

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