|
所在平台: Udemy |
课程主页: https://www.udemy.com/course/introduction-to-optical-eye-modeling-with-zemax/
课程评论:没有评论
**课程名称:** Zemax 光学眼模型入门 **课程概述:** 本课程专为光学工程师、研究人员以及从事视网膜成像、AR/VR 光学和视力相关技术领域的专业人士而设计。课程旨在提供对光学系统理论基础及其在 Zemax OpticStudio 中的实际应用能力的深入理解。 * **光学基础:** 课程涵盖几何光学基本原理,包括反射和折射定律、薄透镜、焦距、光功率和成像。同时,还将探讨色散、阿贝数和鼻侧-颞侧差异等关键概念。 * **像差理论:** 课程深入讲解了像差理论,重点关注单色像差和复色像差,包括离焦、球差、彗差和像散。 * **人眼光学模型:** 课程的重要部分是人眼作为光学系统的建模。学员将学习角膜的详细解剖结构和光学特性,如折射率、屈光度和非球面性,以及晶状体的厚度、曲率和折射率分布。课程还涵盖了眼睛的调节功能,并提供计算调节幅度的实际案例。 * **Zemax OpticStudio 实践:**学员将使用 Zemax OpticStudio 构建近轴眼模型和更高级的 Liou & Brennan 眼模型。通过动手实践,学员将学习模拟和分析光学性能,检测像差,并优化镜片设计以获得更佳效果。课程包含设计单透镜和 Navarro 1985 调节眼模型的实践练习,以加深学员的实际操作能力。 **学习成果:** 完成本课程后,学员将对光学眼建模的理论和实践方面拥有扎实的基础,并能够将这些技能应用于复杂的光学系统。本课程是希望在高级光学建模和仿真领域掌握 Zemax OpticStudio 的理想选择。
This comprehensive course, "Introduction to Optical Eye Modeling with Zemax," is meticulously designed for optical engineers, researchers, and professionals working in areas such as retinal imaging, AR/VR optics, and other vision-related technologies. The course equips learners with a profound understanding of both the theoretical foundations of optical systems and their practical implementation in Zemax OpticStudio.The course begins by covering the essential principles of geometrical optics, including the laws of reflection and refraction, thin lenses, focal length, optical power, and image formation. Learners will also explore critical concepts such as dispersion, the Abbe number, and nasal-temporal distinctions. A thorough treatment of aberration theory follows, with a focus on both monochromatic and chromatic aberrations, including defocus, spherical aberration, coma, and astigmatism.A significant portion of the course is dedicated to modeling the human eye as an optical system. Students will delve into the detailed anatomy and optical properties of the cornea, including its refractive index, power, and asphericity, as well as the crystalline lens, with an emphasis on thickness, curvature, and refractive index distribution. The course also covers accommodation of the eye, including a practical example of calculating the amplitude of accommodation.Utilizing Zemax OpticStudio, students will build a paraxial schematic eye model and the more advanced Liou and Brennan schematic eye model. Participants will gain hands-on experience in simulating and analyzing optical performance, detecting aberrations, and optimizing lens designs for enhanced results. Practical exercises, including the design of a singlet lens and the modeling of the Navarro 1985 accommodated eye, are incorporated to deepen the learners' practical skills.By the end of the course, participants will have a solid foundation in both the theoretical and practical aspects of optical eye modeling and will be fully equipped to apply these skills to complex optical systems. This course is ideal for those seeking to master Zemax OpticStudio in the context of advanced optical modeling and simulation.