说明:双击或选中下面任意单词,将显示该词的音标、读音、翻译等;选中中文或多个词,将显示翻译。
您的位置:首页 -> 词典 -> 多目标遗传算法
1)  multi-objective genetic algorithm
多目标遗传算法
1.
Process parameters optimization for sheet metal forming during drawing with a multi-objective genetic algorithm;
板料拉深成形工艺参数的多目标遗传算法优化
2.
Application of multi-objective genetic algorithm in chemical engineering;
化学工程中多目标遗传算法的应用
3.
Application of multi-objective genetic algorithm in rolling strategy optimization of 8-high 5-stand continuous tandem cold mill;
多目标遗传算法在八辊五机架全连续冷连轧机轧制策略优化中的应用
2)  multi-objective genetic algorithms
多目标遗传算法
1.
Deriving multipurpose reservoir operating rule curves using multi-objective genetic algorithms;
基于多目标遗传算法的综合利用水库优化调度图求解
2.
Parameter optimization for biomass gasification process based on the multi-objective genetic algorithms;
基于多目标遗传算法的生物质气化过程参数优化
3.
This paper presents the airframe/scramjet integrated design method of hypersonic vehicle,in which we design lower surface configuration of airframe and get the Pareto front side through using one-dimensional flow formula to compute performance objectives,and adopting multi-objective genetic algorithms as the optimization method.
多目标遗传算法为优化方法,采用一维流动模型计算性能指标,对机身下壁面前体和后体型线进行了优化设计,得到了Pareto最优前沿面。
3)  MOGA
多目标遗传算法
1.
In this paper,a new design optimization procedure is set up,based multi-objective genetic algorithm(MOGA)combined with the finite element method(FEM).
文章把多目标遗传算法(MOGA)和有限单元法(FEM)有机地结合起来,建立了一种新的结构优化方法。
2.
This paper generalizes multi-objective genetic algorithm(MOGA) and summerizzes a new-patter MOGA.
概括介绍了目前的多目标遗传算法 (MOGA) ,并给出了一种新形式的MOGA ,也就是稳定态非受控排序遗传算法 (SNSGA)。
3.
The MOGA(multi-objective genetic algorithm) and AVL/BOOST software are applied to the automatic optimization design of a four-strokes engine performance,with the closing shift time,opening shift time and the diameter of the intake and exhaust manifold as design variables.
运用AVL/BOOST对发动机性能进行了数值模拟,以进排气提前角、迟闭角和进排气管直径为设计变量,应用目前已成熟的多目标遗传算法对某四冲程发动机的性能进行了优化设计。
4)  multiobjective genetic algorithm
多目标遗传算法
1.
Aimed at this problem,the multiobjective genetic algorithm(MOGA),whose optimal objective is a vector containing the Akaike’s information of both training set and verifying set,is introduced.
以石油化学工业中某一典型环节的建模过程为例 ,通过比较SOGA(单目标遗传算法 )与MOGA(多目标遗传算法 )设计网络的性能 ,验证MOGA解决这一问题的优势。
2.
Aerodynamic optimization technology for compressor design plays an important role in the development of high performance axial flow compressor, multiobjective genetic algorithm are currently being widely used in turbomachine optimization design.
近年来,多目标遗传算法在叶轮机械优化设计中得到了广泛的应用。
5)  multi-object genetic algorithm
多目标遗传算法
1.
The highway alignment optimization algorithm has been presented based on multi-object genetic algorithm(NSGA-Ⅱ),and some key problems such as integration of GIS and GA,object functions,genetic algorithm design have been solved.
建立了基于GIS和遗传算法的公路路线智能优化模型,提出了基于GIS空间数据挖掘技术的选线环境知识获取模型和基于多目标遗传算法NSGA-Ⅱ的路线优化算法,解决了GIS与遗传算法集成、目标函数确定、遗传算法设计等关键问题。
2.
For decreasing spring\'s mass and increasing the life of fatigue,MOGA(multi-object genetic algorithm) is applied to obtain the pareto results of multi-objective optimization of Shock absorber spring,and choose the best answer according to multi-criteria decision.
为实现弹簧轻量化及高疲劳寿命的多目标优化,采用多目标遗传算法求出问题的帕莱托解集,通过后期决策得到不同偏好下的最优解。
3.
The optimization design model of giant magnetostrictive actuator(GMA) was presented and the multi-object genetic algorithm was applied for the optimization design of GMA.
提出了超磁致伸缩执行器(GMA)优化设计模型,并应用多目标遗传算法对超磁致伸缩执行器进行优化设计。
6)  micro multi-objective genetic algorithm
微型多目标遗传算法
1.
The micro multi-objective genetic algorithm with high efficiency was adopted.
提出一种高效的薄板冲压成形变压边力多目标优化方法,该方法以减少冲压件的成形缺陷为优化目标,以变压边力曲线的特征参数为优化变量,采用自主开发的微型多目标遗传算法作为优化算法,并在优化过程中引入神经网络近似模型以减少数值模拟的次数,提高优化效率。
2.
In order to solve these problems,a multi-objective optimization method based on the micro multi-objective genetic algorithm for the telescopic boom structure has been proposed.
针对目前用于散料输送的大跨度布料机布料臂架结构重大、设计冗余度严重过剩等问题,采用一种微型多目标遗传算法对布料臂架主梁结构尺寸进行多目标优化。
补充资料:多因子遗传病


多因子遗传病
multifactorial inheritance disease

  见“多基因遗传病”。
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条