• 제목/요약/키워드: image correction controller

검색결과 7건 처리시간 0.022초

DESIGN OF CAMERA CONTROLLER FOR HIGH RESOLUTION SPACE-BORN CAMERA SYSTEM

  • Heo, Haeng-Pal;Kong, Jong-Pil;Kim, Young-Sun;Park, Jong-Euk;Yong, Sang-Soon
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2007년도 Proceedings of ISRS 2007
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    • pp.130-133
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    • 2007
  • In order to get high quality and high resolution image data from the space-borne camera system, the image chain from the sensor to the user in the ground-station need to be designed and controlled with extreme care. The behavior of the camera system needs to be controlled by ground commands to support on-orbit calibration and to adjust imaging parameters and to perform early stage on-orbit image correction, like gain and offset control, non-uniformity correction, etc. The operation status including the temperature of the sensor needs to be transferred to the ground-station. The preparation time of the camera system for imaging with specific parameters should be minimized. The camera controller needs to synchronize the operation of cameras for every channel and for every spectral band. Detail timing information of the image data needs to be provided for image data correction at ground-station. In this paper, the design of the camera controller for the AEISS on KOMPSAT-3 will be introduced. It will be described how the image chain is controlled and which imaging parameters are to be adjusted The camera controller will have software for the flexible operation of the camera by the ground-station operators and it can be reconfigured by ground commands. A simple concept of the camera operations and the design of the camera controller, not only with hardware but also with controller software are to be introduced in this paper.

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듀얼 스캐닝을 이용한 고해상 LED 전광판 영상제어장치설계 (Using a high-resolution LED display Dual Scanning Image Control System Design)

  • 하영재;김인재;김선형
    • 한국정보통신학회논문지
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    • 제15권7호
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    • pp.1415-1422
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    • 2011
  • 본 논문에서는 풀 칼라 전광판에서 고효율의 해상도 표출을 위해서 듀얼 스캐닝 제어방식을 제안하고, 이를 이용해서 LED전광판의 고정된 픽셀을 영상신호에 따라 픽셀 도트 형태를 변화하게 하였다. 그리고 DICT(Dynamic Image Correction Technology) 메인 컨트롤러를 이용해서 동영상 정보를 히스토그램 균등화에 의거 영상 계조도의 값을 균일하게 분포하도록 하고, 동적 영역을 변환하여 화질을 개선하며, 입력 영상을 듀얼 오토 스캔 스위칭 컨트롤러로 전광판 내 LED Module의 픽셀을 물리적으로 제어함으로서 기존 전광판 LED 픽셀 도트의 표출 대비 4배의 고해상도 표출이 가능하도록 하는 기술을 제안하고 이를 시험제작을 통해서 그 성능을 입증하였다.

Research of Phase Correlation Method for Identifying Quantitative Similarity in Adjacent Real-time Streaming Frame

  • Cho, Yongjin;Yun, Yeji;Lee, Kyou-seung;Oh, Jong-woo;Lee, DongHoon
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 2017년도 춘계공동학술대회
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    • pp.157-157
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    • 2017
  • To minimize the damage by wild birds and acquire the benefits such as protection against weeds and maintenance of water content in soil, the mulching black color vinyl after seeding should be carried out. Non-contact and non-destructive methods that can continuously determine the locations are necessary. In this study, a crop position detection method was studied that uses infrared thermal image sensor to determine the cotyledon position under vinyl mulch. The moving system for acquiring image arrays has been developed for continuously detecting crop locations under plastic mulching on the field. A sliding mechanical device was developed to move the sensor, which were arranged in the form of a linear array, perpendicular to the array using a micro-controller integrated with a stepping motor. The experiments were conducted while moving 4.00 cm/s speed of the IR sensor by the rotational speed of the stepping motor based on a digital pulse width modulation signal from the micro-controller. The acquired images were calibrated with the spatial image correlation. The collected data were processed using moving averaging on interpolation to determine the frame where the variance was the smallest in resolution units of 1.02 cm. Non-linear integral interpolation was one of method for analyzing the frequency using the normalization image and then arbitrarily increasing the limited data value of $16{\times}4pixels$ in one frame. It was a method to relatively reduce the size of overlapping pixels by arbitrarily increasing the limited data value. The splitted frames into 0.1 units instead of 1 pixel can propose more than 10 times more accurate and original method than the existing correction method. The non-integral calibration method was conducted by applying the subdivision method to the pixels to find the optimal correction resolution based on the first reversed frequency. In order to find a correct resolution, the expected location of the first crop was indicated on near pixel 4 in the inversion frequency. For the most optimized resolution, the pixel was divided by 0.4 pixel instead of one pixel to find out where the lowest frequency exists.

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모니터 색상 보정을 위한 색측기 비교 실험에 관한 연구 (Comparative Experimental Study on Color Meter for Monitor Color Correction)

  • 한병조;구경완
    • 전기학회논문지P
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    • 제59권4호
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    • pp.444-449
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    • 2010
  • The PID control to the monitor color correction was applied. Converted Gamma LUT was applied to the video card. Color and brightness information from the PID controller was used as control inputs. Color and brightness information from a calibrated monitor is measured again. Then, the difference between the preset values for the PID controller was compensated by the feedback. The software measured by color meter was used for color and brightness information. All of the monitor does not measure the color and brightness was measured by sampling. The color and brightness from the monitor were measured not by complete enumeration but by sampling. In the experiment, the original image was displayed on the same monitor as well as two other brands, and then, Gamma and Contrast were measured and compared.

히스토그램 분포 제어가 가능한 풀칼라 LED 디스플레이장치 개발 (Development of the Full color LED displays using the control algorithm of histogram distribution)

  • 하영재;진병윤;김선형
    • 한국정보통신학회논문지
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    • 제14권7호
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    • pp.1708-1714
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    • 2010
  • 본 논문에서는 기존의 full color LED 전광판에서 일반적인 화질 개선 혹은 화질 보정의 방법으로는 감마, 휘도, 명도조절 등으로 영상의 전체적인 색상과는 상관없이 일률적으로 밝게 혹은 어둡게 처리해 왔다. 그러나 단순히 표출되는 영상 자체의 휘도를 일정 크기로 일률적으로 휘도를 조정하는 방법은 입력되는 영상 신호의 특성을 반영하지 않아 단지 화면 전체가 밝아지거나 어두워졌다는 느낌만을 줄 뿐이다. 그래서 기존의 영상 전송 방식과는 다른 새로운 기술로 LED 전광판에 입력되는 영상 데이터의 히스토그램 분석을 통해 기준 휘도 값을 결정함으로써 입력되는 영상 데이터의 특성이 반영되고, 해당 기준 휘도 값에 따라 히스토그램의 분포를 제어함으로써 LED 전광판에 표출되는 영상 휘도를 균일하게 향상시킬 수 있는 히스토그램 분포 제어가 가능한 full color 전광판의 영상 구동 처리기술을 제안하였다.

Research of Non-integeral Spatial Interpolation for Precise Identifying Soybean Location under Plastic Mulching

  • Cho, Yongjin;Yun, Yeji;Lee, Kyou-seung;Oh, Jong-woo;Lee, DongHoon
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 2017년도 춘계공동학술대회
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    • pp.156-156
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    • 2017
  • Most crop damages have been occurred by vermin(e.g., wild birds and herbivores) during the period between seeding and the cotyledon level. In this study, to minimize the damage by vermin and acquire the benefits such as protection against weeds and maintenance of water content in soil, immediately vinyl mulching after seeding was devised. Vinyl mulching has been generally covered with black color vinyl, that crop seeding locations cannot be detected by visible light range. Before punching vinyl, non-contact and non-destructive methods that can continuously determine the locations are necessary. In this study, a crop position detection method was studied that uses infrared thermal image sensor to determine the cotyledon position under vinyl mulch. The moving system for acquiring image arrays has been developed for continuously detecting crop locations under plastic mulching on the field. A sliding mechanical device was developed to move the sensor, which were arranged in the form of a linear array, perpendicular to the array using a micro-controller integrated with a stepping motor. The experiments were conducted while moving 4.00 cm/s speed of the IR sensor by the rotational speed of the stepping motor based on a digital pulse width modulation signal from the micro-controller. The acquired images were calibrated with the spatial image correlation. The collected data were processed using moving averaging on interpolation to determine the frame where the variance was the smallest in resolution units of 1.02 cm. For this study, the spline method was relatively faster than the other polynomial interpolation methods, because it has a lower maximum order of formulation when using a system such as the tridiagonal linear equation system which provided the capability of real-time processing. The temperature distribution corresponding to the distance between the crops was 10 cm, and the more clearly the leaf pattern of the crop was visually confirmed. The frequency difference was decreased, as the number of overlapped pixels was increased. Also the wave pattern of points where the crops were recognized were reduced.

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위성용 전자광학카메라의 초점제어시스템 설계 및 검증 (Satellite Camera Focus Mechanism Design and Verification)

  • 박종억;이기준
    • 대한원격탐사학회지
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    • 제34권2_1호
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    • pp.227-236
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    • 2018
  • 다양한 목적으로 개발되는 영상획득용 카메라는 고품질의 영상정보 획득을 위해 초점제어 기능이 탑재될 수 있다. 영상의 품질향상을 위한 후처리 보정에 앞서, 광학계와 영상센서를 비롯한 하드웨어를 통해 우수한 1차 영상 획득이 선행되어야 한다. 고해상도의 영상 촬영 임무를 수행하는 위성탑재용 고해상도 카메라의 경우, 고정된 광학계로 인해 일반 카메라와 달리 초점제어가 필수요건은 아니지만, 여러 외부요인으로 인해 해당 기능이 필요할 수 있다. 위성용 전자광학카메라의 초점제어방식에는 모터를 사용하는 기본적인 방식이 있으나, 이에 비해 다양한 장점(설계, 설치, 운용, 오염, 고신뢰성 등)을 갖는 열 제어에 의한 초점제어 방법이 대안으로 제시될 수 있다. 본 논문에서는 카메라경통에 설치된 온도센서와 히터를 이용한 초점제어방법을 설계하고 구현한 결과를 설명한다. 제안하는 초점제어방법에서, 측정된 온도 정보는 칼만필터를 통해 제어에 필요한 온도 데이터로 변환되고, 이 값을 이용하여 구현된 PI 제어기를 통해 열에 의한 초점제어가 수행된다.