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Multidisciplinary design optimization of a dual-spin guided vehicle
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作者 Jalal Karimi Mohammad Reza Rajabi +1 位作者 Seyed Hossein Sadati Seyed Mahid Hosseini 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第7期133-148,共16页
In this research,a Multidisciplinary Design Optimization approach is proposed for the dual-spin guided flying projectile design considering external and internal parts of the body as design variables.In this way,a par... In this research,a Multidisciplinary Design Optimization approach is proposed for the dual-spin guided flying projectile design considering external and internal parts of the body as design variables.In this way,a parametric formulation is developed.All related disciplines,including structure,aerodynamics,guidance,and control are considered.Minimum total mass,maximum aerodynamic control effectiveness,minimum miss distance,maximum yield stress in all subsystems,controllability and gyroscopic stability constraints are some of objectives/constraints taken into account.The problem is formulated in All-At-Ones Multidisciplinary Design Optimization approach structure and solved by Simulated Annealing and minimax algorithms.The optimal configurations are evaluated in various aspects.The resulted optimal configurations have met all design objectives and constraints. 展开更多
关键词 Flying projectile optimal design All-at-ones multidisciplinary optimization Structure discipline Guidance and control discipline Aerodynamic discipline
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Reliability-based design optimization for flexible mechanism with particle swarm optimization and advanced extremum response surface method 被引量:1
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作者 张春宜 宋鲁凯 +2 位作者 费成巍 郝广平 刘令君 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第8期2001-2007,共7页
To improve the computational efficiency of the reliability-based design optimization(RBDO) of flexible mechanism, particle swarm optimization-advanced extremum response surface method(PSO-AERSM) was proposed by integr... To improve the computational efficiency of the reliability-based design optimization(RBDO) of flexible mechanism, particle swarm optimization-advanced extremum response surface method(PSO-AERSM) was proposed by integrating particle swarm optimization(PSO) algorithm and advanced extremum response surface method(AERSM). Firstly, the AERSM was developed and its mathematical model was established based on artificial neural network, and the PSO algorithm was investigated. And then the RBDO model of flexible mechanism was presented based on AERSM and PSO. Finally, regarding cross-sectional area as design variable, the reliability optimization of flexible mechanism was implemented subject to reliability degree and uncertainties based on the proposed approach. The optimization results show that the cross-section sizes obviously reduce by 22.96 mm^2 while keeping reliability degree. Through the comparison of methods, it is demonstrated that the AERSM holds high computational efficiency while keeping computational precision for the RBDO of flexible mechanism, and PSO algorithm minimizes the response of the objective function. The efforts of this work provide a useful sight for the reliability optimization of flexible mechanism, and enrich and develop the reliability theory as well. 展开更多
关键词 reliability-based design optimization flexible robot manipulator artificial neural network particle swarm optimization advanced extremum response surface method
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Multidisciplinary design optimization on production scale of underground metal mine 被引量:4
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作者 左红艳 罗周全 +1 位作者 管佳林 王益伟 《Journal of Central South University》 SCIE EI CAS 2013年第5期1332-1340,共9页
In order to ensure overall optimization of the underground metal mine production scale, multidisciplinary design optimization model of production scale which covers the subsystem objective function of income of produc... In order to ensure overall optimization of the underground metal mine production scale, multidisciplinary design optimization model of production scale which covers the subsystem objective function of income of production, safety and environmental impact in the underground metal mine was established by using multidisciplinary design optimization method. The coupling effects from various disciplines were fully considered, and adaptive mutative scale chaos immunization optimization algorithm was adopted to solve multidisciplinary design optimization model of underground metal mine production scale. Practical results show that multidisciplinary design optimization on production scale of an underground lead and zinc mine reflect the actual operating conditions more realistically, the production scale is about 1.25 Mt/a (Lead and zinc metal content of 160 000 t/a), the economic life is approximately 14 a, corresponding coefficient of production profits can be increased to 15.13%, safety factor can be increased to 5.4% and environmental impact coefficient can be reduced by 9.52%. 展开更多
关键词 underground metal mines production scale multidisciplinary design optimization adaptive mutative scale chaosoptimization algorithm immunization
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Applying the disciplinary relation matrix to multidisciplinary design optimization modeling and solving 被引量:1
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作者 Hua Su Liangxian Gu Chunlin Gong 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2017年第4期703-716,共14页
A new efficient coupling relationship description method has been developed to provide an automated and visualized way to multidisciplinary design optimization (MDO) modeling and solving. The disciplinary relation mat... A new efficient coupling relationship description method has been developed to provide an automated and visualized way to multidisciplinary design optimization (MDO) modeling and solving. The disciplinary relation matrix (DRM) is proposed to describe the coupling relationship according to disciplinary input/output variables, and the MDO definition has been reformulated to adopt the new interfaces. Based on these, a universal MDO solving procedure is proposed to establish an automated and efficient way for MDO modeling and solving. Through a simple and convenient initial configuration, MDO problems can be solved using any of available MDO architectures with no further effort. Several examples are used to verify the proposed MDO modeling and solving process. Result shows that the DRM method has the ability to simplify and automate the MDO procedure, and the related MDO framework can evaluate the MDO problem automatically and efficiently. 展开更多
关键词 multidisciplinary design optimization (MDO) problem definition solution architecture solving automation
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Torpedo Overall Multidisciplinary Design Based on Collaborative Optimization
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作者 余德海 宋保维 +2 位作者 李家旺 杨世兴 高智勇 《Defence Technology(防务技术)》 SCIE EI CAS 2008年第2期115-118,共4页
A torpedo multidisciplinary design optimization (MDO) based on the collaborative optimization is proposed. Through decomposition and coordination, some problems in torpedo design such as multidisciplinary coupling, la... A torpedo multidisciplinary design optimization (MDO) based on the collaborative optimization is proposed. Through decomposition and coordination, some problems in torpedo design such as multidisciplinary coupling, large data volume and complex data relationships can be solved. Taking aim at some complex problems in the torpedo design, such as computation in multidisciplinary design, organization, modeling and information exchange, the collaborative optimization methods based on approximate technology are presented. An example to increase the torpedo range is also given. It demonstrates that the method can converge quickly, has higher reliability and smaller data throughput, and is a very effective MDO method. 展开更多
关键词 操作调查 鱼雷 合作优化 功能
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Optimization design of piles subjected to horizontal loads based on reliability theory
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作者 赵文艺 徐志军 郑俊杰 《Journal of Central South University》 SCIE EI CAS 2014年第7期2928-2934,共7页
Based on reliability theory,a general method for the optimization design of piles subjected to horizontal loads is presented.This method takes into consideration various uncertainties caused by pile installation,varia... Based on reliability theory,a general method for the optimization design of piles subjected to horizontal loads is presented.This method takes into consideration various uncertainties caused by pile installation,variability of geotechnical materials from one location to another,and so on.It also deals with behavior and side constraints specified by standard specifications for piles.To more accurately solve the optimization design model,the first order reliability method is employed.The results from the numerical example indicate that the target reliability index has significant influence on design parameters.In addition,the optimization weight increases with the target reliability index.Especially when the target reliability index is relatively large,the target reliability index has significant influence on design weight of piles. 展开更多
关键词 reliability-based optimization design horizontal load objective function boundary condition first order reliability method
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Multidisciplinary integrated design of long-range ballistic missile using PSO algorithm 被引量:6
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作者 ZHENG Xu GAO Yejun +1 位作者 JINGWuxing WANG Yongsheng 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2020年第2期335-349,共15页
In the case of the given design variables and constraint functions, this paper is concerned with the rapid overall parameters design of trajectory, propulsion and aerodynamics for long-range ballistic missiles based o... In the case of the given design variables and constraint functions, this paper is concerned with the rapid overall parameters design of trajectory, propulsion and aerodynamics for long-range ballistic missiles based on the index of the minimum take-off mass.In contrast to the traditional subsystem independent design, this paper adopts the research idea of the combination of the subsystem independent design and the multisystem integration design.Firstly, the trajectory, propulsion and aerodynamics of the subsystem are separately designed by the engineering design, including the design of the minimum energy trajectory, the computation of propulsion system parameters, and the calculation of aerodynamic coefficient and dynamic derivative of the missile by employing the software of missile DATCOM. Then, the uniform design method is used to simplify the constraint conditions and the design variables through the integration design, and the accurate design of the optimized variables would be accomplished by adopting the uniform particle swarm optimization(PSO) algorithm. Finally, the automation design software is written for the three-stage solid ballistic missile. The take-off mass of 29 850 kg is derived by the subsystem independent design, and 20 constraints are reduced by employing the uniform design on the basis of 29 design variables and 32 constraints, and the take-off mass is dropped by 1 850 kg by applying the combination of the uniform design and PSO. The simulation results demonstrate the effectiveness and feasibility of the proposed hybrid optimization technique. 展开更多
关键词 BALLISTIC MISSILE independent design multidisciplinary integrated design uniform design particle SWARM optimization(PSO)
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Design methodology of a mini-missile considering flight performance and guidance precision 被引量:1
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作者 ZHANG Licong GONG Chunlin +1 位作者 SU Hua ANDREA Da Ronch 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2024年第1期195-210,共16页
The design of mini-missiles(MMs)presents several novel challenges.The stringent mission requirement to reach a target with a certain precision imposes a high guidance precision.The miniaturization of the size of MMs m... The design of mini-missiles(MMs)presents several novel challenges.The stringent mission requirement to reach a target with a certain precision imposes a high guidance precision.The miniaturization of the size of MMs makes the design of the guidance,navigation,and control(GNC)have a larger-thanbefore impact on the main-body design(shape,motor,and layout design)and its design objective,i.e.,flight performance.Pursuing a trade-off between flight performance and guidance precision,all the relevant interactions have to be accounted for in the design of the main body and the GNC system.Herein,a multi-objective and multidisciplinary design optimization(MDO)is proposed.Disciplines pertinent to motor,aerodynamics,layout,trajectory,flight dynamics,control,and guidance are included in the proposed MDO framework.The optimization problem seeks to maximize the range and minimize the guidance error.The problem is solved by using the nondominated sorting genetic algorithm II.An optimum design that balances a longer range with a smaller guidance error is obtained.Finally,lessons learned about the design of the MM and insights into the trade-off between flight performance and guidance precision are given by comparing the optimum design to a design provided by the traditional approach. 展开更多
关键词 mini-missiles(MMs) GUIDANCE NAVIGATION and control(GNC)system multi-objective optimization multidisciplinary design optimization(MDO) flight performance guidance precision
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Transient reliability optimization for turbine disk radial deformation
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作者 费成巍 白广忱 +2 位作者 唐文忠 蔡逸思 高海峰 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第2期344-352,共9页
The radial deformation design of turbine disk seriously influences the control of gas turbine high pressure turbine(HPT) blade-tip radial running clearance(BTRRC). To improve the design of BTRRC under continuous opera... The radial deformation design of turbine disk seriously influences the control of gas turbine high pressure turbine(HPT) blade-tip radial running clearance(BTRRC). To improve the design of BTRRC under continuous operation, the nonlinear dynamic reliability optimization of disk radial deformation was implemented based on extremum response surface method(ERSM), including ERSM-based quadratic function(QF-ERSM) and ERSM-based support vector machine of regression(SR-ERSM). The mathematical models of the two methods were established and the framework of reliability-based dynamic design optimization was developed. The numerical experiments demonstrate that the proposed optimization methods have the promising potential in reducing additional design samples and improving computational efficiency with acceptable precision, in which the SR-ERSM emerges more obviously. Through the case study, we find that disk radial deformation is reduced by about 6.5×10–5 m; δ=1.31×10–3 m is optimal for turbine disk radial deformation design and the proposed methods are verified again. The presented efforts provide an effective optimization method for the nonlinear transient design of motion structures for further research, and enrich mechanical reliability design theory. 展开更多
关键词 turbine disk radial deformation reliability-based transient design optimization extremum response surface method support vector machine regression
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多学科设计优化在复杂船型开发中的应用
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作者 章瑾 叶杨 朱婷 《舰船科学技术》 北大核心 2025年第7期59-63,共5页
在复杂船型开发中,多学科设计优化的应用对提升船舶综合性能、降低成本等具有重要意义。本文搭建多学科优化设计框架,明确综合优化目标,兼顾水动力、结构、稳性和经济性等多方面需求,深入分析各学科约束条件,为优化设计奠定基础。运用... 在复杂船型开发中,多学科设计优化的应用对提升船舶综合性能、降低成本等具有重要意义。本文搭建多学科优化设计框架,明确综合优化目标,兼顾水动力、结构、稳性和经济性等多方面需求,深入分析各学科约束条件,为优化设计奠定基础。运用改进粒子群算法,借助动态惯性权重调整、自适应学习因子等策略提升搜索能力,在收敛速度和稳定性上优于传统算法,将其应用于复杂船型多学科优化设计,重点研究船首和螺旋桨的多学科优化设计方案,结果表明多学科设计优化方法能有效提升设计效率。 展开更多
关键词 多学科设计优化 复杂船型 改进粒子群算法 优化目标
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基于分布并行式增广拉格朗日协调的MDO方法
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作者 桂俊涛 贺岩松 +2 位作者 唐中华 张志飞 徐中明 《计算机集成制造系统》 北大核心 2025年第2期579-589,共11页
鉴于增广拉格朗日协调方法在并行求解上存在一定局限性,为在分布式协调的框架下对子问题进行并行求解,提出分布并行式增广拉格朗日协调的多学科设计优化方法。在分布式协调结构中通过滞后的耦合信息构建一致性约束,采用自适应异步乘子... 鉴于增广拉格朗日协调方法在并行求解上存在一定局限性,为在分布式协调的框架下对子问题进行并行求解,提出分布并行式增广拉格朗日协调的多学科设计优化方法。在分布式协调结构中通过滞后的耦合信息构建一致性约束,采用自适应异步乘子更新策略克服了一致性约束不匹配的问题。根据耦合变量与乘子对惩罚权重进行更新的方案可避免惩罚权重过大的问题。两项改进避免了解发散与振荡的情况,在分布式协调中实现了子问题的并行求解。通过实例仿真证明了所提方法的可行性,与集中式协调方法相比,所提方法无需重构协调关系,并行化程度与求解效率更高。通过求解工程问题进一步验证了所提方法的可行性与有效性,为基于分解的优化方法子问题的并行化求解提供了参考。 展开更多
关键词 增广拉格朗日协调 分布式 并行计算 多学科设计优化 自适应更新策略
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工质驱动分布式推进系统多学科优化设计研究
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作者 王笑晨 贾琳渊 +2 位作者 陈玉春 吴吉昌 张鑫 《推进技术》 北大核心 2025年第3期26-38,共13页
为对工质驱动分布式推进系统的性能、尺寸、质量进行评估与多学科优化设计,从部件技术水平出发,基于推进系统气动热力学优化模型及部件几何/结构/性能耦合模型建立了推进系统多学科设计方法。以此为支撑,采用粒子群优化算法对工质驱动... 为对工质驱动分布式推进系统的性能、尺寸、质量进行评估与多学科优化设计,从部件技术水平出发,基于推进系统气动热力学优化模型及部件几何/结构/性能耦合模型建立了推进系统多学科设计方法。以此为支撑,采用粒子群优化算法对工质驱动分布式推进系统和涡轮电分布式推进系统进行了多学科优化设计。针对40 kN级巡航推力分布式推进系统的设计结果显示,工质驱动分布式推进系统相对于涡轮电分布式推进设计点耗油率降低4.5%,推进系统质量降低38%,但推进系统中各子系统具有更大的尺寸。从质量和耗油率而言,工质驱动分布式推进系统是降低飞行任务油耗的可行技术途径,但其换热器及传输管路尺寸较大,是在工程实践中应用面临的主要挑战。 展开更多
关键词 分布式推进 工质驱动 流路尺寸预估 多学科设计 粒子群优化算法
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基于神经网络代理模型的车身多学科轻量化优化设计
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作者 荣海 蒋建中 +2 位作者 姚再起 马凯 杜柯南 《汽车安全与节能学报》 北大核心 2025年第1期32-42,共11页
通过车身零件厚度优化,在保证正碰、侧碰、模态和刚度多个学科关键性能基本不变的前提下,实现车身轻量化设计。采用代理模型法代替仿真与协同优化方法结合开展优化;考虑到碰撞工况的高度非线性特性,选择基于机器学习算法的全连接神经网... 通过车身零件厚度优化,在保证正碰、侧碰、模态和刚度多个学科关键性能基本不变的前提下,实现车身轻量化设计。采用代理模型法代替仿真与协同优化方法结合开展优化;考虑到碰撞工况的高度非线性特性,选择基于机器学习算法的全连接神经网络(FCNN)来建立代理模型;基于代理模型法获得轻量化方案最终通过仿真验证。结果表明:与传统响应面模型和Kriging模型相比,FCNN模型具有更强的非线性回归和泛化能力;碰撞工况FCNN的预测精度相较于其他2种模型提升约12.5%,R2达到0.9左右;优化前后车身整体性能变化不大,实现减重7.5kg。 展开更多
关键词 汽车轻量化 多学科优化 神经网络 协同优化 代理模型
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基于可靠性的人字槽轴承多学科设计优化
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作者 杨全毅 《轴承》 北大核心 2025年第7期13-20,共8页
人字槽轴承是微电动机的重要组成部分,由于工作中受到电动机转速、润滑油黏度等不确定性因素的影响,导致轴承可靠性较差,为提高人字槽轴承的可靠性,建立了考虑弹性变形的人字槽轴承热弹流润滑(EHL)模型,采用基于确定性的多学科设计优化(... 人字槽轴承是微电动机的重要组成部分,由于工作中受到电动机转速、润滑油黏度等不确定性因素的影响,导致轴承可靠性较差,为提高人字槽轴承的可靠性,建立了考虑弹性变形的人字槽轴承热弹流润滑(EHL)模型,采用基于确定性的多学科设计优化(MDO)和基于可靠性的多学科设计优化(RBMDO)方法对轴承尺寸进行设计优化,结果表明:未设计优化轴承的可靠性为0.758,MDO的为0.879,RBMDO可以提高到0.99,针对存在不确定性因素的实际工况下,采用RBMDO方法能够大幅度提高轴承可靠性。 展开更多
关键词 滑动轴承 微型电动机 多学科优化设计 转速 黏度 可靠性
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基于OPTIMUS的小型战术导弹多学科设计优化 被引量:4
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作者 苏明慧 任全彬 +5 位作者 罗志清 韩飞 龚学兵 张菲 张佩俊 张熙 《固体火箭技术》 EI CAS CSCD 北大核心 2021年第2期285-292,共8页
针对小型战术导弹总体设计过程中学科耦合性强、计算复杂度高和难以得到全局最优解等问题,对多学科设计优化技术在总体方案论证中的应用展开了研究。首先,从工程实际的角度建立了小型战术导弹推进、几何外形、气动、质量、弹道等学科设... 针对小型战术导弹总体设计过程中学科耦合性强、计算复杂度高和难以得到全局最优解等问题,对多学科设计优化技术在总体方案论证中的应用展开了研究。首先,从工程实际的角度建立了小型战术导弹推进、几何外形、气动、质量、弹道等学科设计模型。其次,运用多学科可行法,在多学科设计框架OPTIMUS中进行了学科集成与工作流的搭建,实现了仿真分析流程自动化;然后,以小型战术导弹起飞质量最小为目标,采用差分进化算法得到了一组小型战术导弹最优总体参数,使导弹质量降低了11.6%,有效提高了导弹性能;最后,为探究导弹射程与起飞质量的耦合关系,以小型战术导弹质量最小和射程最大为目标,采用法向边界求交法进行了多目标优化设计,得到了系统的Pareto模型,为确定方案阶段小型战术导弹总体参数提供了参考。结果表明,多学科设计优化方法在小型战术导弹总体参数方案的论证中具备较强的工程应用价值。 展开更多
关键词 小型战术导弹 多学科设计优化 总体设计 参数优化 多目标优化 optimUS优化平台
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高速飞行器气动控制耦合优化设计方法研究
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作者 董超 潘鑫 +1 位作者 姜璐璐 陈刚 《西安交通大学学报》 EI CAS CSCD 北大核心 2024年第8期196-204,共9页
针对传统串行设计过程由于空气动力学和控制系统数学模型复杂、无法综合考虑气动和控制的多目标优化的问题,提出了一种面向高速飞行器气动控制耦合优化设计方法。基于气动单学科代理优化(SBO)算法,将飞行器主动控制技术(ACT)的思想与多... 针对传统串行设计过程由于空气动力学和控制系统数学模型复杂、无法综合考虑气动和控制的多目标优化的问题,提出了一种面向高速飞行器气动控制耦合优化设计方法。基于气动单学科代理优化(SBO)算法,将飞行器主动控制技术(ACT)的思想与多学科优化方法(MDO)相结合,构建了高速飞行器气动控制耦合多目标优化流程架构。在2马赫来流条件下,对带有控制舵的双锥体外形开展了气动耦合优化设计研究,以提升飞行器的气动性能和控制能力为优化目标。结果表明:经过气动控制耦合优化后的最优模型在超声速环境下,升力系数和升阻比分别提升了0.401%、2.999%,同时超调量与控制增益分别降低了2.769%、0.655%,气动性能和控制能力得到提升,验证了耦合策略的可行性;气动控制耦合优化的最优模型不仅使飞行器在超声速工作环境下性能更卓越,还有助于降低后续控制系统的设计难度,提高飞行器设计效率。所提气动控制耦合优化设计方法为高速飞行器的先进设计提供了必要的技术支撑。 展开更多
关键词 高速飞行器 气动控制耦合 多学科优化 外形设计
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多学科设计优化方法在水下无人航行器中应用 被引量:4
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作者 张磊 胡震 《哈尔滨工程大学学报》 EI CAS CSCD 北大核心 2024年第1期144-152,共9页
为了提高水下无人航行器工作的可靠性和稳健性,本文采用多学科设计优化方法开展航行器的总体设计优化。首先开展水下航行器在总体设计阶段的学科设计,分析了各学科内部的模型和计算方法,明确了各学科输入、输出和耦合关系;开展了学科内... 为了提高水下无人航行器工作的可靠性和稳健性,本文采用多学科设计优化方法开展航行器的总体设计优化。首先开展水下航行器在总体设计阶段的学科设计,分析了各学科内部的模型和计算方法,明确了各学科输入、输出和耦合关系;开展了学科内参数建模,确立了总体设计的设计变量、系统参数和约束条件。然后以航行器质量最轻和机动性能最强为优化目标,获得设计变量计算最优解和优化设计主要输出结果值。设计变量优化计算值有效提高设计方案满足约束的能力,优化设计主要输出结果为水下无人航行器设计方案的选择提供了定量依据。 展开更多
关键词 自主式水下潜器 学科建模 总体设计 设计变量 设计约束 优化计算 多学科设计优化 协同优化算法
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飞行器气动稳健优化设计方法研究进展 被引量:2
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作者 赵欢 王摄昆 +1 位作者 高正红 黄江涛 《空气动力学学报》 CSCD 北大核心 2024年第9期37-69,I0001,36,共35页
随着对现代飞行器性能需求的不断提高,面向工程应用的先进气动外形设计方法要求能兼顾多学科高性能和稳健性,以突破传统设计方法设计的外形稳健性差、难以实现工程应用的难题。针对这一问题,飞行器气动稳健优化设计方法脱颖而出并取得... 随着对现代飞行器性能需求的不断提高,面向工程应用的先进气动外形设计方法要求能兼顾多学科高性能和稳健性,以突破传统设计方法设计的外形稳健性差、难以实现工程应用的难题。针对这一问题,飞行器气动稳健优化设计方法脱颖而出并取得了快速发展,多种高效实用的不确定量化和稳健优化方法被相继提出,成为了满足工程型号气动外形设计要求最有力的手段之一。本文以建立工程实用的高效气动稳健优化设计方法为需求,综述了飞行器气动稳健优化设计相关理论和方法的最新研究进展。首先,系统介绍了飞行器气动稳健优化设计方法的研究现状和最新进展,对不确定建模、不确定量化和稳健优化等关键技术的发展现状进行了详细介绍和讨论;然后,结合当前最受关注的工程应用问题,陈述和讨论了气动稳健优化设计方法在跨声速翼型/机翼、自然层流外形、叶栅/旋翼外形3类典型复杂气动设计问题中的应用效果和进展,同时结合多学科分析与优化设计需要,调研了气动/隐身/声爆/结构多学科稳健优化设计在工程设计问题中的最新进展和发展方向;最后,结合文献综述,讨论了飞行器气动稳健优化设计理论和方法在发展和应用上面临的难题和挑战,并展望了未来研究方向。 展开更多
关键词 气动稳健优化设计 不确定建模 不确定量化 多学科稳健优化 稳健气动外形
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基于协同优化的耐压柱壳多学科多目标优化 被引量:3
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作者 王萌 刘峰 +1 位作者 田震 杨松源 《哈尔滨工程大学学报》 EI CAS CSCD 北大核心 2024年第1期62-69,共8页
为提高耐压柱壳的设计效率和结构性能,本文基于多学科设计优化思想,进行了耐压柱壳多学科设计优化的学科分解,确定了耐压柱壳多学科优化设计的设计参数,明确了设计变量间的耦合关系,设计了耐压柱壳参数化分析流程,进行了设计变量灵敏度... 为提高耐压柱壳的设计效率和结构性能,本文基于多学科设计优化思想,进行了耐压柱壳多学科设计优化的学科分解,确定了耐压柱壳多学科优化设计的设计参数,明确了设计变量间的耦合关系,设计了耐压柱壳参数化分析流程,进行了设计变量灵敏度分析。在利用响应面模型建立了具有较高拟合精度耐压柱壳近似模型的基础上,以质量排水量比和极限载荷为目标函数,建立了基于协同优化方法的耐压柱壳多学科多目标优化模型,在确定了系统层和学科层的优化求解方法基础上,设计了基于协同优化的耐压柱壳多学科多目标优化框架,进行了优化的求解工作,得到了优化方案。与初始方案的对比表明:所得到的Pareto解集中,部分方案在2个目标函数上均得到了优化,验证了优化框架的有效性。 展开更多
关键词 耐压柱壳 设计参数 耦合关系 参数化分析流程 近似模型 目标函数 协同优化方法 多学科多目标优化 优化框架
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基于OpenMDAO的BLISS-2000多学科设计优化:流程、策略与参数研究 被引量:1
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作者 高裕浩 何腾武 赵敏 《中国舰船研究》 CSCD 北大核心 2024年第6期135-149,共15页
[目的]旨在基于OpenMDAO研究BLISS-2000多学科设计优化方法的近似模型、一致性约束、边界更新策略对其收敛性能与优化效率的影响。[方法]首先,给出BLISS-2000方法优化流程和边界更新策略;然后,基于OpenMDAO建立BLISS-2000方法模型,结合... [目的]旨在基于OpenMDAO研究BLISS-2000多学科设计优化方法的近似模型、一致性约束、边界更新策略对其收敛性能与优化效率的影响。[方法]首先,给出BLISS-2000方法优化流程和边界更新策略;然后,基于OpenMDAO建立BLISS-2000方法模型,结合数学算例和工程算例验证所建模型准确性;最后,研究近似模型准确度、一致性等式约束及约束松弛、边界更新策略对BLISS-2000方法收敛性能与优化效率的影响。[结果]结果表明,通过提高近似模型准确度、选取适当的约束松弛因子和边界更新因子,可显著提高BLISS-2000方法的收敛性能与优化效率,并得到基于约束松弛的BLISS-2000方法相关参数的建议取值。[结论]研究结果可对改进BLISS-2000方法及船舶与海洋工程装备概念设计阶段应用BLISS-2000方法提供参考。 展开更多
关键词 船舶设计 多目标优化 多学科设计优化 OpenMDAO BLISS-2000 近似模型 边界更新策略
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