Multidisciplinary optimization design of a new underwater vehicle with highly efficient gradient calculation

被引:0
作者
Daiyu Zhang
Baowei Song
Peng Wang
Xu Chen
机构
[1] Northwestern Polytechnical University,School of Marine Science and Technology
来源
Structural and Multidisciplinary Optimization | 2017年 / 55卷
关键词
Underwater vehicle; Multidisciplinary design optimization; Multidisciplinary feasible; Gradient calculation;
D O I
暂无
中图分类号
学科分类号
摘要
In order to reduce the cost of oceanographic exploration, a new underwater vehicle is designed to sail the required distance with the lowest energy consumed. Since the new underwater vehicle is a complicated multidisciplinary system, it is firstly decomposed into four smaller disciplines and then a multidisciplinary design optimization (MDO) problem is built based on these disciplines. The Multidisciplinary Feasible (MDF) architecture is adopted as the solution strategy to this optimization problem considering that it is easily implemented and a multidisciplinary feasible solution is always guaranteed throughout the optimization process. To solve this optimization problem efficiently, the coupled adjoint method is firstly introduced to improve the efficiency of gradient calculation and then a discipline-merging method is proposed to further enhance the computational efficiency. After this, the discipline-merging method is verified against the finite difference method in two aspects of solution accuracy and computational costs and the results show it is an effective and high efficient gradient calculation method. Finally, the multidisciplinary design optimization of the new underwater vehicle is performed efficiently under the MDF architecture with the discipline-merging method to calculate gradients.
引用
收藏
页码:1483 / 1502
页数:19
相关论文
共 62 条
[1]  
Alam K(2014)A brief taxonomy of autonomous underwater vehicle design literature Ocean Eng 88 627-630
[2]  
Ray T(2002)Analytical and computational aspects of collaborative optimization for multidisciplinary design AIAA J 40 301-309
[3]  
Anavatti SG(1996)Optimization of coupled systems: A critical overview of approaches AIAA J 34 6-17
[4]  
Alexandrov NM(1991)Special issue intelligent autonomous systems autonomous underwater vehicles: Current activities and research opportunities Robot Auton Syst 7 139-150
[5]  
Lewis RM(1992)Non-hierarchic system decomposition in structural optimization Eng Optim 19 171-186
[6]  
Balling R(2006)Autonomous underwater vehicles for scientific and naval operations Ann Rev Control 30 117-130
[7]  
Sobieszczanski-Sobieski J(2006)Evaluation of multidisciplinary optimization techniques applied to a reusable launch vehicle J Spacecr Rocket 43 1289-1300
[8]  
Blidberg DR(1994)Problem formulation for multidisciplinary optimization SIAM J Optim 4 754-776
[9]  
Turner RM(2007)Simulation of long-distance auv in low speed maneuvers J Syst Simul 19 470-477
[10]  
Chappell SG(2005)Multidisciplinary design optimization with quasiseparable subsystems Optim Eng 6 9-20