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Home > chinese-english > "无穷远平面" in English

English translation for "无穷远平面"

plane at infinity

Related Translations:
无穷多:  infinitely many
趣味无穷:  be of infinite interest; afford the greatest delight; be fascinating
无穷结:  endless knott the
祸患无穷:  with consequences of maximum seriousness; constant cause of trouble; incessant calamities
无穷花:  hibiscus syriacus
名誉无穷:  short is my date but deathless my renown.-homer
无穷乘积:  infinite product
实无穷:  actual infinity
无穷变量:  infinitely variable
无穷群:  infinite group
Example Sentences:
1.We analyze the essence of affine reconstruction and prove the sufficient conditions that a reversible matrix can be an infinite plane homography matrix and we can not uniquely decide an infinite plane homography matrix from fundamental matrix
详细分析了仿射重构的本质,证明了可逆矩阵为无穷远平面单应矩阵的充分条件,以及从基本矩阵无法唯一确定无穷远平面单应矩阵。
2.Expatiate the substance of projective reconstruction is solving fundamental matrix , substance of affine reconstruction is solving infinite homography or infinite plane and substance of metric reconstruction is solving absolute conic images
阐述了射影重构的实质是求解基本矩阵,仿射重构的实质是求解无穷远平面或无穷远平面单应,欧氏重构的实质是求解绝对二次曲线的像。
3.This one - constraint - less property of the kruppa equations is their inherent deficiency and is independent of camera motion . this deficiency is due to their failure of automatic enforcement of the rank - three - ness on the absolute quadric
从而, kruppa方程的独立个数比基于绝对二次曲面或基于无穷远平面的自标定方程的独立个数少1 ,这是源于kruppa方程不能保证绝对二次曲面的秩为3 ,是由kruppa方程自身的特性决定的,而与摄像机的运动无关。
4.In the first part , depending on three or more images , the main research work are listed as follows : ( l ) using svd decomposition to realize projective reconstruction ; ( 2 ) realizing camera self - calibration by solving kruppa ' s equation ; ( s ) recovering euclidean reconstruction from projective reconstruction . depending on only two images , the main researches are : ( l ) making out infinite plane homography matrix by using scene structure information , then recovering affine reconstruction from projective reconstruction ; ( 2 ) making out the absolute conic images by using scene structure information , and then recovering euclidean reconstruction from projective reconstruction
在第一部分中,针对三幅及三幅以上的图像,主要研究:利用矩阵奇异值分解( svd )实现射影重构,通过求解kruppa方程实现摄像机自标定,由射影重构恢复欧氏重构;针对只有两幅图像的情况,主要研究:利用场景结构信息求解无穷远平面的单应矩阵,由射影重构恢复仿射重构,利用场景结构信息求解绝对二次曲线的像(等价于标定摄像机) ,由仿射重构恢复欧氏重构。
5.In 3d space , points on the infinite plane compose the absolute conic , and it contains the interior parameter information of camera . we use photography geometry character of circular point on the absolute conic to calculate camera interior parameter , exterior parameter can be obtained . we can obtain more accurate
在三维摄影空间中,无穷远平面上的点构成了绝对二次曲线,由于二次曲线的像包含了摄像机的内部参数信息,我们利用了圆环点的像在二次曲线上的摄影几何特性,从而确定摄像机的内部参数,进而求取摄像机运动的外部参数。
6.The coupled effect is analyzed for an elliptical inhomogeneity under plane uniform loads and linear temperature change at infinity . the complex potentials are obtained for an elliptical inhomogeneity under plane uniform mechanical loading , uniform temperature change and uniform heat flow directed at any angle . the discussion is also given to the variation of the interfacial stresses with thermal parameters
分析了无穷远平面加载和线性温变的耦合效应,获得了椭圆夹杂体在无穷远平面均匀加载和均匀升温以及任意方向的均匀热流共同作用下的复势解答,并讨论了界面应力随各热载参数的变化规律,发现基体导热性能越好(与夹杂相比) ,界面应力幅值越大。
7.We systemically discuss how to uniquely decide an infinite plane homography matrix by using the structure information in scene and how to evaluate a homography matrix which convert affine reconstruction to euclidean reconstruction by solving absolute conic images . we give three constraints of absolute conic images and use these constraints to evaluate absolute conic images and then to rec
系统地讨论了如何利用场景中的结构信息,来唯一地确定无穷远平面的单应矩阵,进而由射影重构恢复仿射重构,以及如何通过绝对二次曲线的像求解将仿射重构变换为欧氏重构的单应矩阵。
Similar Words:
"无穷远的" English translation, "无穷远点" English translation, "无穷远电极" English translation, "无穷远法" English translation, "无穷远焦点" English translation, "无穷远线" English translation, "无穷远圆" English translation, "无穷远直线" English translation, "无穷增加" English translation, "无穷憎恶" English translation