Structure of Optimal Control in Optimal Shaping of the Steel Arch

IF 0.6 Q4 ENGINEERING, CIVIL Civil and Environmental Engineering Reports Pub Date : 2022-09-01 DOI:10.2478/ceer-2022-0033
L. Mikulski, D. Jasińska, O. Dąbrowska
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Abstract

Abstract The paper presents the problem of optimal shaping of the H-bar cross-section of a steel arch that ensures minimal mass. Nineteen combinations of nine basic load states are considered simultaneously in the problem formulation. The optimal shaping task is formulated as a control theory problem within the formal structure of the maximum Pontriagin’s principle. Since the ranges of constraint activity defining the control structure are a priori unknown and must be determined numerically, assuming the proper control structure plays a key role in the task solution. The main achievement of the present work is the determination of a solution of the multi-decision and multi-constraint optimization problem of the arch constituting a primary structural system of the existing building assuring the reduction of the structure mass up to 42%. In addition, the impact of the assumed state constraint value on the solution structure is examined.
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钢拱优化成形中的最优控制结构
摘要本文提出了保证最小质量的钢拱H形截面的优化成形问题,该问题同时考虑了9种基本荷载状态的19种组合。最优成形任务被公式化为最大庞特里金原理的形式结构中的控制理论问题。由于定义控制结构的约束活动的范围是先验未知的,并且必须通过数字来确定,因此假设适当的控制结构在任务解决方案中起着关键作用。本工作的主要成果是确定了构成现有建筑主要结构系统的拱的多决策、多约束优化问题的解决方案,确保结构质量减少42%。此外,还考察了假设状态约束值对解结构的影响。
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来源期刊
自引率
14.30%
发文量
40
审稿时长
52 weeks
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