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题名:
A method of rapidly evaluating image quality of NED optical system
作者: Sun, Qi1,2; Qiu, Chuankai1; Yang, Huan1
出版日期: 2014
会议名称: Proceedings of SPIE: International Symposium on Optoelectronic Technology and Application 2014: Advanced Display Technology; and Nonimaging Optics: Efficient Design for Illumination and Solar Concentration
会议日期: 2014
学科分类: Application programs - CCD cameras - Design - Display devices - Image quality - Optical systems - Virtual reality
DOI: 10.1117/12.2070980
中文摘要: In recent years, with the development of technology of micro-display, advanced optics and the software and hardware, near-to-eye display ( NED) optical system will have a wide range of potential applications in the fields of amusement and virtual reality. However, research on the evaluating image quality of this kind optical system is comparatively lagging behind. Although now there are some methods and equipment for evaluation, they can't be applied in commercial production because of their complex operation and inaccuracy. In this paper, an academic method is proposed and a Rapid Evaluation System (RES) is designed to evaluate the image of optical system rapidly and exactly. Firstly, a set of parameters that eyes are sensitive to and also express the quality of system should be extracted and quantized to be criterion, so the evaluation standards can be established. Then, some parameters can be detected by RES consisted of micro-display, CCD camera and computer and so on. By process of scaling, the measuring results of the RES are exact and creditable, relationship between object measurement, subjective evaluation and the RES will be established. After that, image quality of optical system can be evaluated just by detecting parameters of that. The RES is simple and the results of evaluation are exact and keeping with human vision. So the method can be used not only for optimizing design of optical system, but also for evaluation in commercial production. © 2014 SPIE.
英文摘要: In recent years, with the development of technology of micro-display, advanced optics and the software and hardware, near-to-eye display ( NED) optical system will have a wide range of potential applications in the fields of amusement and virtual reality. However, research on the evaluating image quality of this kind optical system is comparatively lagging behind. Although now there are some methods and equipment for evaluation, they can't be applied in commercial production because of their complex operation and inaccuracy. In this paper, an academic method is proposed and a Rapid Evaluation System (RES) is designed to evaluate the image of optical system rapidly and exactly. Firstly, a set of parameters that eyes are sensitive to and also express the quality of system should be extracted and quantized to be criterion, so the evaluation standards can be established. Then, some parameters can be detected by RES consisted of micro-display, CCD camera and computer and so on. By process of scaling, the measuring results of the RES are exact and creditable, relationship between object measurement, subjective evaluation and the RES will be established. After that, image quality of optical system can be evaluated just by detecting parameters of that. The RES is simple and the results of evaluation are exact and keeping with human vision. So the method can be used not only for optimizing design of optical system, but also for evaluation in commercial production. © 2014 SPIE.
收录类别: Ei
语种: 英语
卷号: 9296
ISSN号: 0277786X
文章类型: 会议论文
页码: 92960B
Citation statistics:
内容类型: 会议论文
URI标识: http://ir.ioe.ac.cn/handle/181551/7900
Appears in Collections:微细加工光学技术国家重点实验室(开放室)_会议论文

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作者单位: 1. State Key Laboratory of Optical Technologies for Nano-Fabrication and Micro-Engineering, Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu, Sichuan, China
2. University of Chinese Academy of Sciences, Beijing, China

Recommended Citation:
Sun, Qi,Qiu, Chuankai,Yang, Huan. A method of rapidly evaluating image quality of NED optical system[C]. 见:Proceedings of SPIE: International Symposium on Optoelectronic Technology and Application 2014: Advanced Display Technology; and Nonimaging Optics: Efficient Design for Illumination and Solar Concentration. 2014.
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