Group-based multiple pipe routing method for aero-engine focusing on parallel layout

被引:0
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作者
Hexiang Yuan
Jiapeng Yu
Duo Jia
Qiang Liu
Hui Ma
机构
[1] Northeastern University,School of Mechanical Engineering and Automation
[2] Northeastern University,Key Laboratory of Vibration and Control of Aero
[3] Shenyang Engine Research Institute of AECC,Propulsion System (Ministry of Education)
[4] Liaoning Petrochemical University,School of Information and Control Engineering
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关键词
multiple pipe routing; optimization algorithm; aero-engine; pipe grouping; parallel layout;
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学科分类号
摘要
External pipe routing for aero-engine in limited three-dimensional space is a typical nondeterministic polynomial hard problem, where the parallel layout of pipes plays an important role in improving the utilization of layout space, facilitating pipe assembly, and maintenance. This paper presents an automatic multiple pipe routing method for aero-engine that focuses on parallel layout. The compressed visibility graph construction algorithm is proposed first to determine rapidly the rough path and interference relationship of the pipes to be routed. Based on these rough paths, the information of pipe grouping and sequencing are obtained according to the difference degree and interference degree, respectively. Subsequently, a coevolutionary improved differential evolution algorithm, which adopts the coevolutionary strategy, is used to solve multiple pipe layout optimization problem. By using this algorithm, pipes in the same group share the layout space information with one another, and the optimal layout solution of pipes in this group can be obtained in the same evolutionary progress. Furthermore, to eliminate the minor angle deviation of parallel pipes that would cause assembly stress in actual assembly, an accurate parallelization processing method based on the simulated annealing algorithm is proposed. Finally, the simulation results on an aero-engine demonstrate the feasibility and effectiveness of the proposed method.
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页码:798 / 813
页数:15
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