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首页> 外文期刊>International Journal of Solids and Structures >Integrated structural/control optimization of large adaptive smart structures
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Integrated structural/control optimization of large adaptive smart structures

机译:大型自适应智能结构的集成结构/控制优化

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The authors recently presented a general computational model for active control of large structures subjected to dynamic loadings such as impact, earthquake, or wind loadings through integration of four different technologies: control theory, optimization theory, sensor/actuator technology, and high-performance computing. In this extension of the research, the computational model is generalized by simultaneous minimization of the weight of the structure and the required level of control forces. The solution of the integrated structural/control optimization problem For large structures requires high-performance computing resources. A new parallel-vector algorithm has been developed for computation of the closed loop eigenvalue and damping factor sensitivities. The computational model and parallel vector algorithms have been applied to both steel bridge and multistorey space Frame structures subjected to various types of dynamic loadings such as impulsive traffic, wind, and earthquake loadings. It is concluded that through adroit use of controllers, the weight of the minimum weight structure can be reduced substantially. This research provides the foundation for design and construction of a new generation of high-technology adaptive/smart structures. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 18]
机译:作者最近提出了一种通用计算模型,该模型通过集成四种不同的技术来主动控制大型结构,这些结构受到诸如冲击,地震或风荷载的动态载荷:控制理论,优化理论,传感器/执行器技术以及高性能计算。在这项研究的扩展中,通过同时最小化结构的重量和所需的控制力水平来概括计算模型。集成结构/控制优化问题的解决方案对于大型结构,需要高性能的计算资源。已经开发了一种新的并行矢量算法,用于计算闭环特征值和阻尼因子灵敏度。计算模型和并行矢量算法已应用于钢桥和多层空间框架结构,它们承受各种类型的动态载荷,例如脉冲交通,风和地震载荷。结论是,通过熟练地使用控制器,可以大大减少最小重量结构的重量。该研究为新一代高科技自适应/智能结构的设计和构建提供了基础。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:18]

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