• 제목/요약/키워드: Zoom lens design

검색결과 66건 처리시간 0.02초

Convergence Point Adjustment Improving Visual Discomfort for a Zoom on a Stereoscopic Camera

  • Ha, Jong Soo;Kim, Dae Woong;Kim, Dong Hyun
    • Journal of the Optical Society of Korea
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    • 제20권5호
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    • pp.633-640
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    • 2016
  • In a dual lens stereoscopic camera, a convergence point determines the stereopsis effects of a video. When a user zooms an object, a convergence point is fixed since it is not coupled with a zoom function. Due to the fixed convergence point, it is possible for a zoom to cause the excessive binocular disparity resulting in visual discomfort. In this paper, to solve this problem, we build the relational model including all phenomena possible to arise and propose the adjustment methods of a convergence point by the positions of a focus, an object and a convergence point. We also evaluate the experiments measuring a binocular disparity and the subjective test to investigate the visual comfort. The results show that one of the proposed methods produced more comfortable 3D images to viewers than the others.

줌 구조를 이용하여 물체거리가 변해도 상면과 배율이 고정되는 현미경 광학계의 설계 (The design of microscopic system using zoom structure with a fixed magnification and the independency on the variation of object distance)

  • 류재명;조재흥;임천석;정진호;전영세;이강배
    • 한국광학회지
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    • 제14권6호
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    • pp.613-622
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    • 2003
  • 반도체 와이어 본딩(wire-bonding) 조립공정에 사용되는 검사용 다중배치 현미경 광학계를 설계하였다. 2배와 6배에 공통으로 사용되는 대물부를 통과한 광선은 광분할 프리즘으로 둘로 나뉘고 각각의 결상부에 의하여 물체의 주변부는 2배, 물체의 중심부는 6배로 결상하게 한다. 이 때 리드프레임의 와이어 구조 때문에 $\pm$3 mm의 높이차가 있어서 대물부에서 물체까지의 거리가 서로 다르다. 이러한 단차에 ,의해 물체거리가 바뀌더라도 동일한 결상 배율로 선명하게 관찰하기 위해 결상부를 기계 보정식 줌 렌즈와 같이 비선형 궤적으로 이동시켜야 한다. 이 궤적을 구하기 위해 가우스 괄호를 사용해 비선형 연립방정식을 세우고 풀었다. 또한 각 렌즈 군의 굴절능과 군간 간격을 구하는 군별 기초 설계는 등가렌즈에 대한 3차 수차 이론을 사용하였으며, 최종적으로 최적화 기법을 통하여 이러한 현미경 광학계를 얻었다.

Infrared Dual-field-of-view Optical System Design with Electro-Optic/Laser Common-aperture Optics

  • Jeong, Dohwan;Lee, Jun Ho;Jeong, Ho;Ok, Chang Min;Park, Hyun-Woo
    • Current Optics and Photonics
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    • 제2권3호
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    • pp.241-249
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    • 2018
  • We report a midinfrared dual-field-of-view (FOV) optical system design for an airborne electro-optical targeting system. To achieve miniaturization and weight reduction of the system, it has a common aperture and fore-optics for three different spectral wavelength bands: an electro-optic (EO) band ($0.6{\sim}0.9{\mu}m$), a midinfrared (IR) band ($3.6{\sim}4.9{\mu}m$), and a designation laser wavelength ($1.064{\mu}m$). It is free to steer the line of sight by rotating the pitch and roll axes. Our design co-aligns the roll axis, and the line of sight therefore has a fixed entrance pupil position for all optical paths, unlike previously reported dual-FOV designs, which dispenses with image coregistration that is otherwise required. The fore-optics is essentially an achromatized, collimated beam reducer for all bands. Following the fore-optics, the bands are split into the dual-FOV IR path and the EO/laser path by a beam splitter. The subsequent dual-FOV IR path design consists of a zoom lens group and a relay lens group. The IR path with the fore-optics provides two stepwise FOVs ($1.50^{\circ}{\times}1.20^{\circ}$ to $5.40^{\circ}{\times}4.32^{\circ}$), due to the insertion of two Si lenses into the zoom lens group. The IR optical system is designed in such a way that the location and f-number (f/5.3) of the cold stop internally provided by the IR detector are maintained when changing the zoom. The design also satisfies several important performance requirements, including an on-axis modulation transfer function (MTF) that exceeds 10% at the Nyquist frequency of the IR detector pitch, with distortion of less than 2%.

Convergence Point Adjustment Methods for Minimizing Visual Discomfort Due to a Stereoscopic Camera

  • Ha, Jong-Soo;Kim, Dae-Woong;Kim, Dong Hyun
    • Journal of information and communication convergence engineering
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    • 제12권4호
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    • pp.246-251
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    • 2014
  • The recent rise of the three-dimensional television (3DTV) industry has led to a wide exploitation of the dual-lens stereoscopic camera. However, when the zoom-in function is used, it is possible that a camera object is magnified only with a fixed convergence point, thereby leading to visual discomfort. In this paper, we propose several methods based on which a convergence point can be adjusted to prevent visual discomfort during zoom-in for a dual-lens stereoscopic camera. Further, we produce 3D contents by applying the proposed methods to certain cases and at certain distances and conduct a subjective evaluation. On the subjective evaluation, 48 subjects watch the 3D contents created by the proposed methods and score the stages of the visual comfort. The result of the subjective evaluation shows that some of the proposed methods are more efficient than the others. We hope that these proposed high-efficiency methods can be applied to produce a dual-lens stereoscopic camera that allows convenient stereoscopic photography.

줌인에 따른 시각적 불편을 최소화하기 위한 컨버전스 포인트 조정 기법의 설계 (Design of a Convergence Point Adjustment Method to Minimize Visual Discomfort due to Zoom-In)

  • 하종수;반재훈;김대웅;김치훈
    • 한국정보통신학회논문지
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    • 제17권3호
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    • pp.665-671
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    • 2013
  • 이안식 일체형 입체카메라는 편리한 입체 촬영이 가능하지만 줌인시 고정된 컨버전스포인트로 인해 촬영된 영상 시청시에 어지러움을 유발하는 시각적 불편이 발생할 수 있으므로 이를 방지하기 위한 연구가 필요하다. 본 논문에서는 이안식 일체형 입체카메라에서 줌인시 발생되는 시각적 불편을 방지하기 위해 컨버전스 포인트를 조정하는 기법을 제시한다. 먼저, 포커스, 피사체 및 컨버전스포인트의 위치에 따른 관계모델을 9가지로 분류하고 정의한다. 그리고 이 모델에서 컨버전스포인트를 조정하여 시각적 불편을 최소화하는 기법을 제안한다. 또한 제안한 기법을 애널그리프 방식의 컴퓨터 그래픽으로 구현하여 우수성을 입증한다.

반구형 SIL을 이용한 미디어 내부 이층 근접장 광 기록계의 설계 (Design of Cover Layer Incident Dual-Layer Near-Field Recording Optics with Hemispherical SIL)

  • 김완진;최현;송태선;박노철;박영필
    • 정보저장시스템학회:학술대회논문집
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    • 정보저장시스템학회 2005년도 추계학술대회 논문집
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    • pp.4-11
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    • 2005
  • In this paper, we propose novel optics design for media inside near-field recording (NFR) using hemispherical solid immersion lens (HMS). To obtain strong advantage of data protection and high data capacity simultaneously, HMS based near field optics using aplanatic position of super hemisphere is designed. In this design, to improve small optical tolerance of this aplanatic position, additional aspheric lens surface is added on top of the HMS and it is combined with zoom optics which composed of two single lenses having low numerical aperture (NA). Also, to compensate chromatic aberration which happens seriously in optics using blue laser diode, diffractive optical element is used. Using zoom optics, additional aspheric lens surface, and diffractive optical element together, wavefront aberration and chromatic aberration are effectively reduced in broad range of cover layer thickness and wavelength variation. In addition, In this paper, effect of gap induced aberration is investigated by analyzing different behavior of each TM and TE wave for designed media inside dual-layer NFR optics.

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반구형 SIL을 이용한 미디어 내부 이층 근접장 광 기록계의 설계 (Design of Cover Layer Incident Dual-Layer Near-Field Recording Optics with Hemispherical SIL)

  • 최현;김완진;송태선;박노철;박영필
    • 정보저장시스템학회논문집
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    • 제2권1호
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    • pp.13-20
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    • 2006
  • In this paper, we propose novel optics design for media inside near-field recording(NFR) using hemispherical solid immersion lens(HMS). To obtain strong advantage of data protection and high data capacity simultaneously, HMS based near field optics using aplanatic position of super hemisphere is designed. In this design, to improve small optical tolerance of this aplanatic position, additional aspheric lens surface is added on top of the HMS and it is combined with zoom optics which composed of two single lenses having low numerical aperture(NA). Also, to compensate chromatic aberration which happens seriously in optics using blue laser diode, diffractive optical element is used. Using zoom optics, additional aspheric lens surface, and diffractive optical element together, wavefront aberration and chromatic aberration are effectively reduced in broad range of cover layer thickness and wavelength variation. In addition, in this paper, effect of gap induced aberration is investigated by analyzing different behavior of each TM and TE wave for designed media inside dual-layer NFR optics.

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