1) extensive stroke
广义笔划
1.
Then,based on the definition of an extensive stroke,extract the relevant properties of the strokes and make a second-level recognition.
该文提出一种两级分类的识别方法:首先,将待识字符抽象为一种图,并提取其拓扑特征进行第一级识别;然后,给出一种广义笔划定义,并在此基础上提取有关的特征进行第二级识别。
2) generalized convex programming
广义凸规划
1.
With the Ben Tal generalized algebraic operation of 2 , we obtained some necessary and sufficient conditions for the class of generalized convex programming, and the results generalize the corresponding ones for the convex Programming.
本文讨论了由一类(h,φ)-凸函数所构成的广义凸规划的最优性条件。
2.
Under certain asumptions,optimality sufficient conditions of generalized convex programming problems are presented.
本文利用广义Ben-Tal代数运算,提出了几类广义(h,φ)-凸函数的定义,并在一定的假设条件下,讨论和得到了一类广义凸规划的最优性充分条件。
3) generalized concave programming
广义凹规划
1.
In this paper, we put forward biconcave programming problem and generalized concave programming problem more generally.
在本文中 ,我们提出了双凹规划问题和更一般的广义凹规划问题 。
4) stroke
[英][strəʊk] [美][strok]
笔划
1.
The stroke/raster signal generation and test in ATS;
ATS中的光栅笔划信号产生和检测技术
2.
The previous method of traversing times of strokes is full-breakthrough to stroke,but this method is not effective for some Chinese Characters,increase workload for second recognition.
笔划代表着汉字的内部特征,笔划穿越次数是对笔划进行全穿越,反映了汉字的整体特征,全穿越在粗分时区分汉字的能力不是太强,增加了二级识别的工作量。
5) generalized fractional programming
广义分式规划
1.
A note on necessary optimality conditions for a class of generalized fractional programming;
一类广义分式规划最优性必要条件的注记
2.
Saddle-point type optimality criteria for a class of generalized fractional programming with B-(p,r)-invexity functions;
B-(p,r)-不变凸性下广义分式规划的鞍点存在性定理
3.
Saddle point optimality criteria for generalized fractional programming;
广义分式规划的鞍点最优性准则
6) generalized geometric programming
广义几何规划
1.
A linearization method for global solution of generalized geometric programming;
求广义几何规划全局最优解的线性化方法
2.
A rapidly convergent algorithm is developed for the equality and inequality constrained generalized geometric programming.
建立带等式与不等式约束的广义几何规划一个新的快速收敛算法,算法的搜索方向由一个二次规划和一个线性方程组的解产生,效益函数为广义精确罚函数。
3.
In this paper a linearization method is proposed for locating the global minimum of the generalized geometric programming(GGP),which can be applied to engineering designs and robust stability analysis of nonlinear systems.
对广泛应用于工程设计、非线性系统鲁棒稳定性分析中的广义几何规划问题(GGP)提出一线性化求解方法。
补充资料:笔划
1.见"笔画"。
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