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首页> 外文期刊>Journal of structural engineering >Topology-Finding of Tensegrity Structures Considering Global Stability Condition
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Topology-Finding of Tensegrity Structures Considering Global Stability Condition

机译:考虑全球稳定条件的拓扑结构

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This study proposes a general framework for topology-finding or topology optimization of tensegrity structures. The existing topology-finding formulation of tensegrity structures based on mixed-integer linear programming (MILP) was improved and transformed into a formulation based on mixed-integer semidefinite programming (MISDP) which considers the global stability condition of tensegrity. We illustrated and analyzed two undesirable phenomena, loss of prestress stability and loss of integrity, caused by the missing global stability condition in previous MILP-based approaches. A branch-and-bound algorithm combined with a primal-dual interior-point algorithm is employed to solve the proposed MISDP model. Some numerical examples illustrated the improvements and effectiveness of the proposed approach. The proposed approach successfully can avoid the two undesirable phenomena and ensure the global stability of the found tensegrity structures. By using different stability conditions in the topology-finding process, the proposed approach can find general stable tensegrity structures and superstable tensegrity structures. DOI: 10.1061/(ASCE)ST.1943-541X.0002843. (c) 2020 American Society of Civil Engineers.
机译:本研究提出了一种拓扑发现或拓扑优化的一般框架。基于混合整数的混合半纤维编程(MISDP),改善了基于混合整数线性编程(MILP)的现有拓扑结构的拓扑结构的制定,并转化为基于混合整数的半纤维编程(MISDP),其考虑了全球稳定性条件。我们说明并分析了两个不良现象,预应力稳定性和诚信丧失,由以前的基于米尔卑斯的方法缺失的全球稳定条件引起的。采用与基权 - 双点算法组合的分支和绑定算法来解决所提出的MISDP模型。一些数值例子说明了所提出的方法的改善和有效性。建议的方法成功避免了两个不良现象,并确保了所发现的态度结构的全球稳定性。通过在拓扑发现过程中使用不同的稳定条件,所提出的方法可以找到一般稳定的稳定性结构和可容易内容的矩形结构。 DOI:10.1061 /(asce)st.1943-541x.0002843。 (c)2020年美国土木工程师协会。

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