Hoffman D D
J Opt Soc Am. 1982 Jul;72(7):888-92. doi: 10.1364/josa.72.000888.
The problem of inferring local surface orientation from changing images is studied computationally by deriving conditions under which the motion information is sufficient for an information processing system, biological or otherwise, to infer unique descriptions of the local surface orientation. The analysis is based on shape-from-motion proposition, which states, that given the first spatial derivatives of the orthographically projected velocity and acceleration fields of a rigidly rotating regular surface, then the angular velocity and the surface normal at each visible point on that surface are uniquely determined up to a reflection. The proof proceeds in two steps. First it is shown that surface tilt and one component of the angular velocity are uniquely determined by the first spatial derivatives of the velocity field. Then it is shown that surface slant and the remaining two components of the angular velocity are uniquely determined if the first spatial derivatives of the acceleration field are also available.
通过推导运动信息足以使信息处理系统(无论是生物的还是其他的)推断局部表面方向的唯一描述的条件,从变化的图像中推断局部表面方向的问题进行了计算研究。该分析基于形状从运动命题,该命题指出,给定刚性旋转规则表面的正投影速度和加速度场的一阶空间导数,则该表面上每个可见点的角速度和表面法线在反射的情况下是唯一确定的。证明分两步进行。首先表明表面倾斜和角速度的一个分量由速度场的一阶空间导数唯一确定。然后表明,如果加速度场的一阶空间导数也可用,则表面倾斜和角速度的其余两个分量是唯一确定的。