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    • 8. 发明授权
    • Method for representing and optimizing a double-progressive spectacle lens
    • 用于表示和优化双渐进眼镜镜片的方法
    • US07021763B2
    • 2006-04-04
    • US10470968
    • 2002-02-04
    • Andrea WelkPeter BaumbachWalter HaimerlHerbert PfeifferGregor EsserHelmut Altheimer
    • Andrea WelkPeter BaumbachWalter HaimerlHerbert PfeifferGregor EsserHelmut Altheimer
    • G02C7/02
    • G02C7/068G02C7/027G02C7/061
    • A method for representing and optimizing a double-progressive spectacle lens is characterized by the following steps: selecting a suitable coordinate system K2 for the representation of a back surface; selecting a suitable grid G for the representation of a spline of the back surface of a starting lens to be optimized in a coordinate system K2; assigning sagittal height data of the back surface to a spline (back surface spline); defining a position of a center of rotation of an eye; computing principal rays from the center of rotation of the eye through the starting lens at grid points of G; computing a length of a distance between points of penetration of a thus computed principal ray through a front surface and the back surface (oblique thickness); assigning data of the oblique thickness (thickness spline) to a spline; selecting a set of assessment positions at which an optical quality is computed for a target function; suitably selecting particular optical and geometrical stipulations which ideally should be satisfied at the assessment positions; defining the target function as a deviation of the quality of an actual spectacle lens from ideal values; starting the optimization; evaluating at each one of optimization steps the optical properties in a wearing position at the assessment points by means of surface properties to be computed and actual principal ray data; ending the optimization when the target function is below a particular value, or after a specifiable maximum number of optimization steps.
    • 用于表示和优化双渐进式眼镜镜片的方法的特征在于以下步骤:为后表面的表示选择合适的坐标系K2; 选择合适的网格G用于在坐标系K2中优化的起始透镜的后表面的样条的表示; 将背面的矢状高度数据分配给花键(后表面花键); 限定眼睛的旋转中心的位置; 在G的格点处计算来自眼睛旋转中心的主光线通过起始镜头; 计算通过前表面和后表面的如此计算的主光线的穿透点之间的距离的长度(倾斜厚度); 将倾斜厚度(厚度样条)的数据分配给花键; 选择一组评估位置,在该位置处计算目标函数的光学质量; 适当地选择在评估位置理想地满足的特定光学和几何规定; 将目标函数定义为实际眼镜片的质量与理想值的偏差; 开始优化; 在每个优化步骤中通过要计算的表面性质和实际主光线数据在评估点处的佩戴位置的光学性质进行评估; 当目标函数低于特定值时,或在可指定的最大数量的优化步骤之后结束优化。