eigenvector matrix信息详情
特征向量矩阵
matrix organization───矩阵式组织,矩阵组织
matrix───n.矩阵;模型;社会环境;基质;母体;子宫;脉石
matrix structure───矩阵结构;基地组织
annihilator matrix───零化子矩阵
stiffness matrix───[力]刚度矩阵;劲度矩阵
controllability matrix───可控性矩阵
factorized matrix───因式矩阵
adjoint matrix───[数]伴随矩阵;伴随(矩) 阵; 伴矩阵
competency matrix───能力矩阵
Matrix iteration method can be employed to figure out the first eigenvalue and eigenvector of a matrix.───矩阵迭代法是求矩阵的第一阶特征值与特征向量的一种数值方法。
Using matrix iteration methods, the eigenvector derivatives can be iterated directly, solving the singular sensitivity equation can be avoided.───采用矩阵迭代法可以直接迭代计算特征向量导数,避免了对奇异灵敏度方程的求解。
This method presents the parametric expressions for the gain matrices and the left eigenvector matrix of the high-order PI observers.───该方法给出了该类观测器的增益矩阵和左特征向量矩阵的参数化表达式。
Finally the eigenvector matrix was utilized to achieve the transformation between the intermediate space and the spectral space.───最后采用特征向量矩阵实现任意多光谱图像数据到中间空间的变换。
According to eigenvector matrix, main influencing factors for iteration convergence of task load were defined.───根据特征向量矩阵,确定影响任务总量迭代收敛的主要因素。
- effect of temperature
- electric clutch
- edi messages
- electrical optical converter
- electromagnetic lens
- electrobaths
- elasticity tensor
- effect on
- electrokinetic coupling
- el ta
- electrical outlet
- electric resistance pyrometer
- efferent process
- edible arrangement
- electric coating
- electrobeam welding
- eigher
- electromagnetic lock
- elasticity test
- electrical output
- el table