• Title/Summary/Keyword: 초점보정렌즈

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A Study on the Wearing Status of the Near Vision Refractive Error Correction Device for Presbyopia in Each Residential District (Chungcheongnam-do and Gyeonggi-do) (거주지별(충청남도와 경기도) 노안의 근거리 시력교정안경 착용 실태)

  • Kim, Jung-Hee;Lee, Young-Il;Kang, Su-Ah
    • Journal of Korean Ophthalmic Optics Society
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    • v.14 no.1
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    • pp.103-108
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    • 2009
  • Purpose: The objective of this study is to compare and analyze the wearing status of refractive error correction devices of elders who reside in a city or in a small town district. Methods: Each of opticians from a small town or a city was selected for the study of wearing status of presbyopia correction device for each residential district in units of percentage. with the analysis of the age and gender distributions of the elders, numbers of elderly members, and the kinds of presbyopia correction. Results: The wearing rate of progressive lens was reduced in reverse proportion to the increase of the age for the people of presbyopia in a twon. Pepople in 60s living in a town perferred to wearing bifocal lens, but people of 50~60s preferred to single vision lenses. However, none of people living in a city who is diagnosed as presbyopia had refractive error correction device, and no one used bifical lenses. The progressive lens was mostly used in the people of 40~50s and using rate of those lenses reduced with the age; and single vision lens had the highest rate of in the 40~50s but no one wore it in the 70s. Conclusions: Among the refractive error correction devices, the progressive lens was most widely worn by presbyopia group who is living in a town or a city. In particular, the refractive error correction devices were most preferred in 40~50s of early presbyopia. The highest preference for the progressive lens in the people with the early presbyopia indicates that the wearing rate of the progressive will be increased in future. Therefore, the opportunity of systematic education on the progressive lens should be increased.

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60cm 광시야 탐사망원경 설치 밀 성능 시험 관측

  • Kyung, Jae-Man;Yuk, In-Su;Yoon, Yo-Na;Han, Won-Yong;Moon, Hong-Kyu;Lim, Hong-Seo;Byeon, Yong-Ik;Yoon, Jae-Hyuk;Jin, Ho;Kim, Ho-Il;Kim, Jung-Mi;Yoo, Seong-Ryeol
    • Bulletin of the Korean Space Science Society
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    • 2004.04a
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    • pp.34-34
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    • 2004
  • 국가지정연구실 사업인 "인공위성 및 지구접근천체 감시연구"에서는 2003월 한국천문연구원 전파연구동에 60cm 광시야 망원경을 설치하여 시험가동중이다. 이 광시야 망원경의 광학계는 초점비 F/2.92로 직초점 방식이며 3개의 보정렌즈를 이용하여 보정된 초점면의 시야는 2.7도가 되도록 설계되었다. 독일에서 제작하였으며 광학계를 구동할 마운트는 국내 제작하였다. Apogee사 AP10, FingerLake 사 2K CCD 카메라, Pentax 67사진 카메라와 같은 다양한 관측기기를 이용하여 광학계의 성능을 검사하고 광축조정을 하고 있으며 발생한 문제점을 파악하여 해결하고 있다. (중략)

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EXB 하전입자빔 에너지 필터의 광학 특성

  • Jo, Bok-Rae;Heo, In-Hye;Park, In-Yong
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.02a
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    • pp.608-608
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    • 2013
  • 직선운동하는 하전입자의 진행방향에 수직한 평면상에 서로 직교하는 전기장과 자기장을 걸어주면, 하전입자에는 전기장에 의한 힘 $F_E$와 자기장과 속도 v에 의한 로렌츠력 $F_B=q(v{\times}B)$가 동시에 작용하게 된다. 이때 Wien 조건 $F_B=-F_E$를 만족하는 질량 $m_A$과, 에너지 $E_A$를 가지는 하전입자 A는 휘지 않고 직선운동을 계속하나, 하전입자 A와 다른 에너지 $E_B(=E_A+{\delta}E)$나 질량 $m_B$ $(=m_A+{\delta}m)$을 가지는 하전입자는 휘게 되며, 그 휘는 정도는 ${\delta}E$${\delta}m$에 비례하게 된다. 이 현상을 이용하여 다양한 종류의 에너지 또는 질량 분석기가 독일, 미국, 일본 등의 분석기기 선진국에서 개발되어 왔고, 전자현미경의 이미지 필터로도 활용되고 있으며, 통상 EXB 필터 또는 발명자의 이름을 딴 Wien 필터로 불리어지고 있다. $E{\times}B$ 필터는 일반적인 하전입자빔 렌즈와 다른 광학특성을 가진다. 예를 들면 3차 이상의 기하 수차만 가지는 일반 렌즈와는 달리 $F_B$, $F_E$ 전자기력에 의해 다양한 2차 기하 수차를 가지게 되며, 초점거리 등의 1차 광학 특성도 일반 렌즈와는 다른 경향을 보여준다. 본 발표에서는 $E{\times}B$ 필터의 전후로 각각 6극자+4극자를 조합시킨 보정기를 배치시켜 필터의 에너지 분해능의 성능을 향상시킬 수 있음을 빔 궤도 방정식을 분석적으로 계산하여 보여준다. 위 에너지 필터 구성에서 4극자는 1차 광학 특성을 조정하는 역할을 하며 6극자는 2차 수차를 줄여주는 역할을 한다. 수치해석을 통해서는 6극자+4극자를 조합시킨 보정기와 $E{\times}B$ 필터의 좀더 정확한 전극 전압 등의 제어 수치를 추출하고, 빔 궤도 방정식 분석을 통한 수차 보정 알고리즘이 유효함을 보여준다.

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The optical capacity's comparison, analysis of copier zoom lens system between symmetric and asymmetric forms (대칭형과 비대칭형 복사기 줌 렌즈계의 광학적 성능 비교 분석)

  • Ji, Taek-Sang;Lim, Hyeon-Seon;Kim, Bong-Hwan
    • Journal of Korean Ophthalmic Optics Society
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    • v.6 no.2
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    • pp.1-9
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    • 2001
  • This research chose the existing designed copier zoom lens system and analyzed to calculate the optical capacity. As this lens system was the zoom lens system of finite object point, differed form the general camera zoom lens of infinite object point, it got a limited movement range because it moved between the fixed object and the image. In the result of comparison the optical capacities between a symmetric form and a asymmetric form. We could find out the truth which a asymmetric form constituted comparative stable aberrations and existed a tracks of effort for aberration correction. Therefore, a symmetric form is allotted satisfactorily from improved aberrations by itself in the fixed focal lens system. However, it has a limit of improving for capacity when it is used a zoom lens system got a symmetric form.

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OPTICAL PROPERTY AND ALIGNMENT OF KAO WIDE FIELD TELESCOPE (NEOPAT-3) (광시야 망원경 3호기 (NEOPAT-3)의 광학계 특성 및 조정)

  • Yuk, In-Soo;Kyeong, Jae-Mann;Yoon, Joh-Na;Yoon, Jae-Hyuck;Yim, Hong-Suh;Moon, Hong-Kyu;Han, Won-Yong;Byun, Yon-Ik;Kang, Yong-Woo;Yu, Sung-Yeol
    • Journal of Astronomy and Space Sciences
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    • v.21 no.4
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    • pp.417-428
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    • 2004
  • We have investigated the optical property of the KAO(Korea Astronomy Observatory) wide field telescope (named NEOPAT-3; Near Earth Object and Satellite Patrol-3) and aligned optical system. The NEOPAT-3 is restricted to V,R,I-filters because of the refractive property of the correcting lens system. Because of the fast focal ratio, the optical performance of the NEOPAT-3 is very sensitive to its alignment factors of the optical system. To make the spot radius smaller than $8{\mu}m$ in rms over 2degree${\times}2$degree field, the optical system must satisfy the following conditions: 1) The tilt error between detector plane and focal plane should be less than 0.05degree. 2) The decenter error between the primary mirror and the correcting lens system should be less than 1mm. 3) The distance error between the primary mirror and the correcting lens system should be less than 2.3mm. In order to align the optical system accurately, we measured the aberrations of the telescope quantitatively by means of curvature sensing technique. NEOPAT-3 is installed temporary on the roof of the TRAO(Taeduk Radio Astronomy Observatory) main building to normalize system performance and to develop automatic observation.

The Aspheric Analysis through the Optical Capacity of 35mm Camera with an Aspheric Zoom Lens System (35mm 카메라 비구면 줌 렌즈계의 광학적 성능을 통한 비구면 분석)

  • Ji, Taek Sang;Lim, Hyeon Seon;Kim, Bong Hwan
    • Journal of Korean Ophthalmic Optics Society
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    • v.6 no.1
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    • pp.93-100
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    • 2001
  • We analyzed aspheric patterns after we investigated zoom lens' constructions and optical capacities of a ordinary designed 35mm camera with an aspheric zoom lens system in this research. As this lens system was the zoom lens system about infinite object point, it was made to get a short back focal length, be able to use a lens unit more close to the image plane, and be used the compact camera which got a viewing system. The zoom ratio of the system was 1 : 2 and it got a positive and negative power's distribution. As it was determined the 35~70 mm focal length range which the most common people used, it might be called economic optical system considered universality. As it was used two aspheric surface, it was used just three lens, compensated the aberration and schemed lens' miniaturization, lightweightization, and the decrease effect of the unit cost of production.

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Design and Analysis of an Optical System for an Uncooled Thermal-imaging Camera Using a Hybrid Lens (Hybrid 렌즈를 이용한 비냉각 열상장비 광학계 설계 및 분석)

  • Ok, Chang-Min;Kong, Hyun-Bae;Park, Hyun-Woo
    • Korean Journal of Optics and Photonics
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    • v.28 no.5
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    • pp.241-249
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    • 2017
  • This paper presents the design and evaluation of the optical system for an uncooled thermal-imaging camera. The operating wavelength range of this system is from $7.7{\mu}m$ to $12.8{\mu}m$. Through optimization, we have obtained a LWIR (Long Wave Infrared) optical system with a focal length of 5.44 mm, which consists of four aspheric surfaces and two diffractive surfaces. The f-number of the optical system is F/1.2, and its field of view is $90^{\circ}{\times}67.5^{\circ}$. The hybrid lens was used to balance the higher-order aberrations, and its diffraction properties were evaluated by scalar diffraction theory. We calculated the polychromatic integrated diffraction efficiency, and the MTF drop generated by background noise. We have evaluated the thermal compensation of a LWIR fixed optical system, which is optically passively athermalized to maintain MTF performance in the focal depth. In conclusion, these design results are useful for an uncooled thermal-imaging camera.

Lens system design for head mounted display using schematic eyes (정밀모형안을 이용한 Head Mounted Display용 렌즈계 설계)

  • 박성찬;안현경
    • Korean Journal of Optics and Photonics
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    • v.14 no.3
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    • pp.236-243
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    • 2003
  • We discussed the design of lens module schematic eyes equivalent to finite model eyes, which are used to model the human eye based on spherical aberration and Stiles-Crowford effect. The optical system for head mounted display (HMD) is designed and evaluated using lens module schematic eyes. In addition to a compact HMD system, an optical system with high Performance is required. To satisfy these requirements, we used diffractive optical elements and aspheric surfaces so that the color and mono-chromatic aberrations were corrected. The optical system for HMD is composed of 0.47 inch micro-display of SVGA grade with 480,000 pixels, a plastic hybrid lens for the virtual image, and the lens module schematic eyes. The designed optical system fulfills the current specifications of HMD: such as, EFL of 31.25 mm, FOV of 24H$\times$18V$\times$30D degrees, and overall length of 59.1 mm. As a result, we could design an optical system useful for HMD; the system is expected to be comfortable while the user wears it.

Autofocus of Infinity-Corrected Optical Microscopes by Confocal Principle and Fiber Source Modulation Technique (공초점 원리와 광섬유 광원 변조를 이용한 무한보정 현미경 자동초점)

  • Park, Jung-Jae;Kim, Seung-Woo;Lee, Ho-Jae
    • Korean Journal of Optics and Photonics
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    • v.15 no.6
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    • pp.583-590
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    • 2004
  • The autofocus is one of the important processes in the automated vision inspection or measurements using optical microscopes, because it influences the measuring accuracy. In this paper, we used the confocal microscope configuration based on not a pinhole but a single-mode optical fiber. A single mode fiber has the functions of source and detector by applying the reciprocal scheme. As a result, we acquired a simple system configuration and easy alignment of the optical axis. Also, we embodied a fast autofocus system by acquiring the focus error signal through a source modulation technique. The source modulation technique can effectively reduce physical disturbances compared with objective lens modulation, and it is easily applicable to general optical microscopes. The focus error signal was measured with respect to the modulation amplitude, reflectance of the specimen and inclination angle of the measuring surface. The performance of the proposed autofocus system was verified through autofocusing flat mirror surface. In addition, we confirmed that source modulation rarely degrades the depth resolution by the comparison between the FWHMs of axial response curves.

Real-Time Camera Tracking for Markerless Augmented Reality (마커 없는 증강현실을 위한 실시간 카메라 추적)

  • Oh, Ju-Hyun;Sohn, Kwang-Hoon
    • Journal of Broadcast Engineering
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    • v.16 no.4
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    • pp.614-623
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    • 2011
  • We propose a real-time tracking algorithm for an augmented reality (AR) system for TV broadcasting. The tracking is initialized by detecting the object with the SURF algorithm. A multi-scale approach is used for the stable real-time camera tracking. Normalized cross correlation (NCC) is used to find the patch correspondences, to cope with the unknown and changing lighting condition. Since a zooming camera is used, the focal length should be estimated online. Experimental results show that the focal length of the camera is properly estimated with the proposed online calibration procedure.