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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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基于iSIGHT的耐压壳静动力学综合优化设计 被引量:3
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作者 杨卓懿 庞永杰 +1 位作者 王燕 宋磊 《船海工程》 2009年第3期84-87,共4页
根据圆柱形耐压壳设计中对强度和稳定性,振动和声辐射的要求,建立了数学模型。以重量最轻,临界频率最大综合优化了耐压壳的静动力学性能。同时,运用APDL语言进行了耐压壳参数化有限元建模。分别在iSIGHT设计环境下集成了自编程序和参数... 根据圆柱形耐压壳设计中对强度和稳定性,振动和声辐射的要求,建立了数学模型。以重量最轻,临界频率最大综合优化了耐压壳的静动力学性能。同时,运用APDL语言进行了耐压壳参数化有限元建模。分别在iSIGHT设计环境下集成了自编程序和参数化有限元模型,两种方法给出了吻合的最优结果。 展开更多
关键词 圆柱耐压壳 参数化建模 多目标与多学科综合优化
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