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Simulation method for evaluating progressive addition lenses

机译:评价渐进镜片的模拟方法

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Since progressive addition lenses (PALs) are currently state-of-the-art in multifocal correction for presbyopia, it is important to study the methods for evaluating PALs. A nonoptical simulation method used to accurately characterize PALs during the design and optimization process is proposed in this paper. It involves the direct calculation of each surface of the lens according to the lens heights of front and rear surfaces. The validity of this simulation method for the evaluation of PALs is verified by the good agreement with Rotlex method. In particular, the simulation with a "correction action" included into the design process is potentially a useful method with advantages of time-saving, convenience, and accuracy. Based on the eye-plus-lens model, which is established through an accurate ray tracing calculation along the gaze direction, the method can find an excellent application in actually evaluating the wearer performance for optimal design of more comfortable, satisfactory, and personalized PALs.
机译:由于渐进屈光镜片(PAL)是目前用于老花眼多焦点矫正的最新技术,因此研究评估PAL的方法很重要。提出了一种在设计和优化过程中准确表征PAL的非光学仿真方法。它涉及根据正面和背面的镜片高度直接计算镜片的每个表面。通过与Rotlex方法的良好一致性,验证了该仿真方法对PAL评估的有效性。尤其是,在设计过程中包含“校正动作”的模拟可能是一种有用的方法,具有省时,方便和准确的优点。基于通过沿凝视方向进行精确的光线追踪计算而建立的“眼睛加镜片”模型,该方法可以在实际评估佩戴者性能以最佳设计更舒适,令人满意和个性化的PAL时找到出色的应用。

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