• Title/Summary/Keyword: 렌즈 왜곡

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A Compensation for Distortion of Stereo-scopic Camera Image Using Neuro-Fuzzy Inference System (뉴로-퍼지 추론시스템을 이용한 입체 영상 카메라의 왜곡 영상 보정)

  • Seo, Han-Seog;Yim, Wha-Young
    • The Journal of the Korea institute of electronic communication sciences
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    • v.5 no.3
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    • pp.262-268
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    • 2010
  • In this paper, this study restores the distorted image to its original image by compensating for the distortion of image from a fixed-focus camera lens. The various developments and applications of the imaging devices and the image sensors used in a wide range of industries and expanded use, but due to the needs of the small size and light weight of the camera, the distortion from acquiring images of the distorted curvature of the lens tends to affect many. In particular, the three-dimensional imaging camera, each different distortion of left and right lens cause the degradation of three-dimensional sensitivity and left-right image distortion ratio. we approached the way of generalizing the approximate equations to restore each part of left-right camera images to the coordinators of the original images. The adaptive Neuro-Fuzzy Inference System is configured for it. This system is divided from each membership function and is inferred by 1st order Sugeno Fuzzy model. The result is that the compensated images close to the left, right original images. Using low-cost and compact imaging lens by which also determine the exact three-dimensional image-sensing capabilities and will be able to expect from this study.

An Interpolation Method for a Barrel Distortion Using Nearest Pixels on a Corrected Image (방사왜곡을 고려한 보정 영상 위최근접 화소 이용 보간법)

  • Choi, Changwon;Yi, Joonhwan
    • Journal of the Institute of Electronics and Information Engineers
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    • v.50 no.7
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    • pp.181-190
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    • 2013
  • We propose an interpolation method considering barrel distortion of fisheye lens using nearest pixels on a corrected image. The correction of barrel distortion comprises coordinate transformation and interpolation. This paper focuses on interpolation. The proposed interpolation method uses nearest four coordinates on a corrected image rather than on a distorted image unlike existing techniques. Experimental results show that both subjective and objective image qualities are improved.

A linearly polarized Nd:YAG laser with a coupled cavity utilizing thermally induced depolarization (열유도된 왜곡편광을 이용하는 결합공진기를 갖는 선형 편광된 Nd:YAG 레이저)

  • Kim, Hyun-Soo;Lee, Sung-Man;Ko, Do-Kyung;Moon, Hee-Jong;Im, Kwon;Cha, Byung-Heon;Lee, Jong-Min
    • Proceedings of the Optical Society of Korea Conference
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    • 2000.08a
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    • pp.104-105
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    • 2000
  • 다이오드 레이저로 펌핑되는 Nd:YAG 매질에 형성된 열 복굴절은 레이저 출력과 빔질의 저하를 초래한다. 선편광된 레이저 출력을 얻기 위해서는 주로 공진기 내에 선형 편광자를 삽입하게 되는데, 레이저 매질에 형성된 열 복굴절에 의한 왜곡 편광된 레이저 빔이 편광자에 의해 반사되어 공진기 손실을 초래한다. 편광 왜곡에 의한 레이저 빔의 손실을 줄이거나 이중 초점을 제거하기 위해 주로 사용되어지는 광 소자는 Faraday 회전자, λ/4 판, 석영 회전자 등이 사용되어진다.$^{(1-5)}$ 90$^{\circ}$ 석영 회전자와 Faraday 회전자는 공진기 내에 두 개의 동일한 구조를 갖는 레이저를 이용할 경우 사용되고 λ/4 판 과 45$^{\circ}$ Faraday 회전자는 주로 단일 레이저 헤드의 복굴절 보상을 위해 사용되어진다. 45$^{\circ}$ Faraday 회전자는 이론적으로 완벽히 열복굴절에 의한 편광 왜곡을 보상한다. 그러나, 열복굴절을 완벽히 보상하기 위해서는 레이저 빔이 항상 레이저 매질의 같은 지점을 통과해야 한다. 실제적으로 레이저 매질에서는 열에 의한 열 렌즈 효과가 있기 때문에 레이저 빔이 항상 같은 지점을 통과하지 않게 된다. 이런 문제를 해결하기 위해 공진기 내에 열 렌즈 효과를 보상하기 위한 렌즈를 삽입하거나 레이저 헤드를 공진기 거울 가까이 설치하여야 한다. Faraday 회전자는 길이가 길기 때문에 레이저 헤드를 공진기 거울 가까이 설치하기는 어렵고 항상 열 렌즈 효과를 보상해주는 광학 소자가 있어야 하는 단점이 있다. 반면 λ/4 판은 완벽한 편광 왜곡을 보상해주지 않아 레이저 손실을 초래하지만 두께가 얇아 레이저 헤드와 공진기 거울을 근접해서 설치할 수 있어서 몇몇 연구자에 의해 연구되어 졌다.$^{(3)}$ 본 연구에서는 λ/4 판을 이용하고 편광기에서 반사된 빔을 공진기에 되반사 시키는 구조를 사용하여 선 편광된 레이저의 출력과 빔의 질을 개선 시켰다. (중략)

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A Study on Color Distortion according to Colors and Luminous Transmittance of Lenses using Word-color Test (단어-색채검사를 이용한 렌즈의 색상과 시감투과율에 따른 색상왜곡에 관한 연구)

  • Lee, Gyeong Sun;Jung, Su A;Kim, Chang Jin;Yang, Seok Jun;Oh, Sang-Young;Jeon, Byoung Jin;Kim, Hyun Jung;Choi, Eun Jung
    • Journal of Korean Ophthalmic Optics Society
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    • v.19 no.4
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    • pp.513-518
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    • 2014
  • Purpose: This study was to investigate color distortion by colors and luminous transmittance of lenses with word-color test included in computerized neurocognitive function test (CNT). Methods: 32 subjects aged $21.97{\pm}1.58$ years with no ocular disease and color vision deficiency were selected. Four colors of tinted lenses, which were red, green and blue included in the primary colors of light and pink, and word-color test in CNT to evaluate changes in cognitive function by color distortion were used. Results: Response time was not significantly increased in green, blue, and pink among four colors, but significantly increased in only red color. And response time was significantly increased below 46% of luminous transmittance in red color. Conclusions: It should be cautious and careful of the red-tinted lens choice because red color with below 46% of luminous transmittance can distort colors of objects, and it could be related to safety problem. It is suggested that word-color test could be extensively used for further studies on color recognition.

Analysis of Effect on Camera Distortion for Measuring Velocity Using Surface Image Velocimeter (표면영상유속측정법을 이용한 유속 측정 시 카메라 왜곡 영향 분석)

  • Lee, Jun Hyeong;Yoon, Byung Man;Kim, Seo Jun
    • Ecology and Resilient Infrastructure
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    • v.8 no.1
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    • pp.1-8
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    • 2021
  • A surface image velocimeter (SIV) measures the velocity of a particle group by calculating the intensity distribution of the particle group in two consecutive images of the water surface using a cross-correlation method. Therefore, to increase the accuracy of the flow velocity calculated by a SIV, it is important to accurately calculate the displacement of the particle group in the images. In other words, the change in the physical distance of the particle group in the two images to be analyzed must be accurately calculated. In the image of an actual river taken using a camera, camera lens distortion inevitably occurs, which affects the displacement calculation in the image. In this study, we analyzed the effect of camera lens distortion on the displacement calculation using a dense and uniformly spaced grid board. The results showed that the camera lens distortion gradually increased in the radial direction from the center of the image. The displacement calculation error reached 8.10% at the outer edge of the image and was within 5% at the center of the image. In the future, camera lens distortion correction can be applied to improve the accuracy of river surface flow rate measurements.

Lens design for microdisplay system (마이크로디스플레이의 렌즈 설계)

  • 김혜경;신승연;박광범;최성호;문현찬
    • Proceedings of the Optical Society of Korea Conference
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    • 2001.08a
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    • pp.212-213
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    • 2001
  • 본 논문에서는 마이크로디스플레이용 광학계의 렌즈 설계와 시뮬레이션으로 구면수차, 비점수차, 왜곡, 색수차를 보정하여 설계한 광학계의 성능 평가를 소개하고자 한다.

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Implementation of Multiview Calibration System for An Effective 3D Display (효과적인 3차원 디스플레이를 위한 다시점 영상왜곡 보정처리 시스템 구현)

  • Bae Kyung-Hoon;Park Jae-Sung;Yi Dong-Sik;Kim Eun-Soo
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.31 no.1C
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    • pp.36-45
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    • 2006
  • In this paper, multiview calibration system for an effective 3D display is proposed. This system can be obtain 4-view image from multiview camera system. Also it can be rectify lens and camera distortion, error of bright and color, and it can be calibrate distortion of geometry. In this paper, we proposed the signal processing skill to calibrate the camera distortions which are able to take place from the acquisited multiview images. The discordance of the brightness and the colors are calibrated the color transform by extracting the feature point, correspondence point. And the difference of brightness is calibrated by using the differential map of brightness from each camera image. A spherical lens distortion is corrected by extracting the pattern of the multiview camera images. Finally the camera error and size among the multiview cameras is calibrated by removing the distortion. Accordingly, this proposed rectification & calibration system enable to effective 3D display and acquire natural multiview 3D image.

Fisheye Image Correction with Ellipsoid Model (타원체 모형을 통한 어안 영상 보정)

  • Kim, Hyun-Tae
    • The Journal of the Korea institute of electronic communication sciences
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    • v.10 no.2
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    • pp.177-182
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    • 2015
  • General method for correcting the distortion caused by the characteristic of the fish-eye lens may be classified in two ways. The first method is a calibration method using a mathematical model taking into account the characteristics of the lens, the second method is a method using only the distortion correction image, regardless of the lens. When considering the characteristics of the lens, calibration equation can be calculated geometrically from the relationship between the three-dimensional real-world coordinates and two-dimensional image coordinates and the parameters of lens. However, it is not suitable for ellipsoid type lens, because of existing research papers have been corrected on the spherical-type fisheye lens. In this paper, we propose a method for correcting geometrically using fish-eye lens as an ellipsoid model. Through a calibration picture, it can be seen that the proposed method is valid.

Distortion Analysis in Stereoscopic Images (스테레오 영상에서의 상의 왜곡 해석)

  • ;Y. Gruts
    • Proceedings of the Optical Society of Korea Conference
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    • 2001.02a
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    • pp.198-199
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    • 2001
  • 본 논문은 스테레오 영상의 왜곡 현상을 분석하는 수학적인 해석 방법을 제안하였다. 스테레오 카메라의 중심과 투사기의 중심을 연결하는 직선이 스크린이 가지는 평면의 중심을 지나는 법선 벡터가 되고, 스테레오 카메라와 투사기의 두 렌즈의 광축이 스크린의 중심에 놓일 경우에 사진을 찍는 조건, 투영 조건 및 관측 조건에 해당하는 해석해를 유도하였다. 위 세 가지 조건에 따라 영상의 왜곡 정도가 바뀌게 되는데 왜곡을 최소한으로 만들 수 있는 조건식을 유도하였다.

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The Change of Interior Orientation Parameters in Zoom Lens Digital Cameras (줌렌즈 디지털 카메라의 내부표정요소 변화)

  • Kim, Gi-Hong;Jeong, Soo;Kim, Baek-Seok
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.28 no.1
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    • pp.93-98
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    • 2010
  • Recently, as digital photogrammetry bas been widely used in various fields including construction, it is also being applied to several industries. It is essential for interior orientation to determine accurate focal length of camera, lens distortion, location of principal point in order to apply high quality digital camera to digital photogrammetry. In this study we conducted interior orientation for zoom lens camera with regular time and zoom factors and analyzed change of radial distortion parameters and location of principal point to evaluate interior orientation stability. As a result, radial distortion parameters($k_1,k_2$) are converged into zero by increasing zoom factors. There are correlation between the change of location of point and zoom factors. The displacement of $x_p$, $y_p$ increase as zoom factors rise high.