1) double-gradient algorithm
双梯度算法
1.
According to the theory of mathematical morphological and characteristics of wood image,proper structuring elements were selected to obtain mathematical morphological double-gradient algorithm via corrosion,expansion,and weighted array of opening operation and closing operation,which were then applied to edge detection of rotten wood image.
根据数学形态学的思想和木材图像的特性,选取适当的结构元素,通过腐蚀、膨胀、开与闭运算的加权组合,构造出形态学双梯度算法,并将它应用于木材腐朽图像的边缘检测。
2) bi-conjugate gradient algorithm
双共轭梯度算法
3) gradient algorithm
梯度算法
1.
A Combination Algorithm for Structural Optimization Based on Ge netic Algorithm and Gradient Algorithm;
基于遗传算法和梯度算法的一种结构优化混合方法
2.
Convergence of gradient algorithm for BP neural network with multiple output units;
多输出单元BP神经网络梯度算法的收敛性
3.
A new gradient algorithm based on the model is presented, which is called Orth-ExtBS algorithm.
建立了独立成分分析(independentcomponentanalysis,ICA)的一个优化模型,在此基础上,给出了一个新的梯度算法,称之为Orth-ExtBS算法。
6) double trapezoidal algorithm
双梯形算法
1.
The article based on double trapezoidal algorithm puts forward double trapezoidal recursive algorithm for two-dimensional numerical integration.
在双梯形算法的基础上,提出了二重数值积分双梯形递推算法,给出了用C++语言编程实现双梯形递推算法的技术要点,通过对同一实例进行不同的计算实验,测试并比较了复化双梯形算法与双梯形递推算法各自运行时占用Pentium150CPU的时间,实验表明:双梯形递推算法是一种快速计算二重积分、节省CPU时间的高效方法。
补充资料:2,2-双氯甲基-三亚甲基-双[双(2-氯乙基)磷酸脂]
CAS:38051-10-4
分子式:C13H24Cl6O8P2
中文名称:2,2-双氯甲基-三亚甲基-双[双(2-氯乙基)磷酸脂]
英文名称:2,2- bis(chloromethyl)-trimethylene bis[bis(2-chloroethyl)phosphate]
phosphoric acid, 2,2-bis(chloromethyl)-1,3-propanediyl tetrakis(2-chloroethyl)
2,2-bis(chloromethyl)trimethylene bis(bis(2-chloroethyl)phosphate)
2,2-bis(chloromethyl)-1,3-propanediyltetrakis(2-chloroethyl)phosphate
分子式:C13H24Cl6O8P2
中文名称:2,2-双氯甲基-三亚甲基-双[双(2-氯乙基)磷酸脂]
英文名称:2,2- bis(chloromethyl)-trimethylene bis[bis(2-chloroethyl)phosphate]
phosphoric acid, 2,2-bis(chloromethyl)-1,3-propanediyl tetrakis(2-chloroethyl)
2,2-bis(chloromethyl)trimethylene bis(bis(2-chloroethyl)phosphate)
2,2-bis(chloromethyl)-1,3-propanediyltetrakis(2-chloroethyl)phosphate
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