1) epipolar constraint
对极约束
2) biepipole constraint
双对极约束
3) Epipolar geometry
对极几何约束
4) epipolar constraint
极线约束
1.
Method of laser stripe matching based on laser surface and epipolar constraints;
基于激光面和极线约束的激光条纹匹配算法
2.
A method of 3D reconstruction based on structured light and epipolar constraint
基于结构光和极线约束的三维重建
3.
Through the research on binocular stereo vision measurement system, based on the concept of epipolar constraint, a new method is proposed to resolve the corresponding problem between two images which have the same number of points.
通过对双目立体视觉测量数学模型的研究,在2副图像中特征点数相等的情况下,基于极线约束等理论,给出了一种解决图像特征点匹配的新方法,对三维空间中的离散点在2个视平面上的投影点进行了正确的匹配。
5) pole constraint
极点约束
1.
Research on ship ant rolling control with robust pole constraint;
鲁棒极点约束的船舶减摇控制研究
2.
Firstly,based on the T-S fuzzy model of ASV re-entry attitude dynamic system,considering external disturbance and system uncertainties,the stabilization problem of angular rates and attitude angles is studied,then combining with pole constraints,an existence condition for H_∞fuzzy guaranteed cost control law with pole constraints is derived.
首先基于ASV再入姿态动态系统的T-S模糊模型,考虑外界干扰和系统的不确定性,考察了姿态角速率和姿态角的镇定问题,然后结合极点约束,导出了具有极点约束的H_∞模糊保性能控制律存在的条件。
3.
The uncertain attitude dynamic system descriptor during ASV’s (aerospace vehicle’s) re-entry phase based on T-S fuzzy model with parameter perturbation is considered firstly, then, the stabilization problems of attitude angles and angular velocity errors are researched, and combined with disk pole constraints, a condition for the existence of fuzzy guaranteed c.
研究了空天飞行器(ASV)再入姿态的具有闭环极点约束的模糊保性能控制律的设计问题。
6) epipolar constraint
外极约束
1.
An epipolar shope matching method for the stereo stripe is proposed based on the epipolar constraint.
利用投影和透视变换理论以及矩阵转换知识建立了摄像机数学模型及双目视觉传感器模型,并给出摄像机模型中各种参数的求解方法;在外极约束理论的基础上,提出了外极斜率匹配方法,从而实现空间光条快速精确匹配。
补充资料:“质子-电子偶极-偶极”质子弛豫增强
“质子-电子偶极-偶极”质子弛豫增强
物理学术语。原子核外层中不成对的电子质量小,但磁动性很强,可使局部磁场波动增强,促使氢质子弛豫加快,从而使T1和T2缩短,这种效应即为PEDDPRE。过渡元素和镧系元素大部分在d和f轨道有多个不成对电子,所以其离子往往具有PEDDPRE,可用来作顺磁性对比剂,如钆(Gd)。Gd在外层有7个不成对电子,具有很强的顺磁性。
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