• 제목/요약/키워드: Image correction

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선형 CCD카메라 영상의 정밀 기하학적 보정 (Precision correction of satellite-based linear pushbroom-type CCD camera images)

  • 신동석;이영란;이흥규
    • 대한원격탐사학회지
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    • 제14권2호
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    • pp.137-148
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    • 1998
  • 본 논문에서 고해상도 위성영상의 정밀 기하학적 보정에 대하여 기술한다. 일반적으로 GCP로부터 영상과 기준 지도 사이의 다하식을 유도하는 polynomial warping 방법인 경우 원하는 정확도를 얻기위해 영상 전체를 골고루 분포된 많은 GCP를 요구하게 된다. 하지만 제안되는 알고리즘은 위성-센서-궤도-지구 간의 기하학적 모델을 바탕으로 2-3개의 GCP만으로도 전체 영상을 매우 정확히 보정할 수 있다. 개발된 알고리즘은 GCP를 순차적으로 사용하여 부정확한 초기 궤도 및 자세 정보를 정밀하게 추정하고 이러한 추정은 Kalman filter를 사용하여 이루어진다. 이 알고리즘은 현재 우리별 3호의 전처리 소프트웨어에 통합되어 구현되어 있으며 앞으로 우리별 3호 영상뿐 아니라 다목적실용위성 영상의 정밀 기하학적 보정에 사용될 예정이다.

An Experimental Study on the Image-Based Atmospheric Correction Using Multispectral Data

  • Lee Kwang-Jae;Kim Yong-Seung
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2004년도 Proceedings of ISRS 2004
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    • pp.196-200
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    • 2004
  • The purpose of this study is to examine the image­based atmospheric correction models using the data from Landsat Enhanced Thermal Mapper Plus (ETM+) that have quite similar spectral characteristics to the forthcoming Korea Multi-Purpose SATellite (KOMPSAT)-2 Multi-Spectral Camera (MSC), and the in-situ measured surface reflectance data during satellite overflight. The main advantage of this type of correction is that it does not require in-situ measurements during each satellite overflight. While substantial differences are present between Top-Of-the Atmosphere (TOA) reflectance and in-situ measurements, the results showed that Case 1 based on COST model gives most accurate results among three cases. The accuracy of Case 2 is very close to Case 1 and its values are smaller than in-situ data. No notable features appear between some bands in the Case 3 and in-situ data. It is expected from this study that if the current methods are applied to the IKONOS high resolution data, we will be able to develop the suitable atmospheric correction methods for MSC data.

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이진화 영상분할기법과 적응적 융합 가중치를 이용한 광노출 보정기법 (A Light Exposure Correction Algorithm Using Binary Image Segmentation and Adaptive Fusion Weights)

  • 한규필
    • 한국멀티미디어학회논문지
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    • 제24권11호
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    • pp.1461-1471
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    • 2021
  • This paper presents a light exposure correction algorithm for less pleasant images, acquired with a light metering failure. Since conventional tone mapping and gamma correction methods adopt a function mapping with the same range of input and output, the results are pleasurable for almost symmetric distributions to their intensity average. However, their corrections gave insufficient outputs for asymmetric cases at either bright or dark regions. Also, histogram modification approaches show good results on varied pattern images, but these generate unintentional noises at flat regions because of the compulsive shift of the intensity distribution. Therefore, in order to sufficient corrections for both bright and dark areas, the proposed algorithm calculates the gamma coefficients using primary parameters extracted from the global distribution. And the fusion weights are adaptively determined with complementary parameters, considering the classification information of a binary segmentation. As the result, the proposed algorithm can obtain a good output about both the symmetric and the asymmetric distribution images even with severe exposure values.

Respiratory Motion Correction on PET Images Based on 3D Convolutional Neural Network

  • Hou, Yibo;He, Jianfeng;She, Bo
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제16권7호
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    • pp.2191-2208
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    • 2022
  • Motion blur in PET (Positron emission tomography) images induced by respiratory motion will reduce the quality of imaging. Although exiting methods have positive performance for respiratory motion correction in medical practice, there are still many aspects that can be improved. In this paper, an improved 3D unsupervised framework, Res-Voxel based on U-Net network was proposed for the motion correction. The Res-Voxel with multiple residual structure may improve the ability of predicting deformation field, and use a smaller convolution kernel to reduce the parameters of the model and decrease the amount of computation required. The proposed is tested on the simulated PET imaging data and the clinical data. Experimental results demonstrate that the proposed achieved Dice indices 93.81%, 81.75% and 75.10% on the simulated geometric phantom data, voxel phantom data and the clinical data respectively. It is demonstrated that the proposed method can improve the registration and correction performance of PET image.

Robust Radiometric and Geometric Correction Methods for Drone-Based Hyperspectral Imaging in Agricultural Applications

  • Hyoung-Sub Shin;Seung-Hwan Go;Jong-Hwa Park
    • 대한원격탐사학회지
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    • 제40권3호
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    • pp.257-268
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    • 2024
  • Drone-mounted hyperspectral sensors (DHSs) have revolutionized remote sensing in agriculture by offering a cost-effective and flexible platform for high-resolution spectral data acquisition. Their ability to capture data at low altitudes minimizes atmospheric interference, enhancing their utility in agricultural monitoring and management. This study focused on addressing the challenges of radiometric and geometric distortions in preprocessing drone-acquired hyperspectral data. Radiometric correction, using the empirical line method (ELM) and spectral reference panels, effectively removed sensor noise and variations in solar irradiance, resulting in accurate surface reflectance values. Notably, the ELM correction improved reflectance for measured reference panels by 5-55%, resulting in a more uniform spectral profile across wavelengths, further validated by high correlations (0.97-0.99), despite minor deviations observed at specific wavelengths for some reflectors. Geometric correction, utilizing a rubber sheet transformation with ground control points, successfully rectified distortions caused by sensor orientation and flight path variations, ensuring accurate spatial representation within the image. The effectiveness of geometric correction was assessed using root mean square error(RMSE) analysis, revealing minimal errors in both east-west(0.00 to 0.081 m) and north-south directions(0.00 to 0.076 m).The overall position RMSE of 0.031 meters across 100 points demonstrates high geometric accuracy, exceeding industry standards. Additionally, image mosaicking was performed to create a comprehensive representation of the study area. These results demonstrate the effectiveness of the applied preprocessing techniques and highlight the potential of DHSs for precise crop health monitoring and management in smart agriculture. However, further research is needed to address challenges related to data dimensionality, sensor calibration, and reference data availability, as well as exploring alternative correction methods and evaluating their performance in diverse environmental conditions to enhance the robustness and applicability of hyperspectral data processing in agriculture.

iCAM06을 적용한 HDR 영상 톤 압축을 위한 PT 색차 정보 기반의 색 보정 (Color Correction of the Color Difference in the PT Space for HDR Image Tone Compression using iCAM06)

  • 채석민;이성학;송규익
    • 한국멀티미디어학회논문지
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    • 제16권3호
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    • pp.281-289
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    • 2013
  • HDR (High Dynamic Range) 영상 렌더링을 위하여 다중 노출 영상 기반의 iCAM06 영상 재생 모델이 많이 사용되고 있다. iCAM06은 HDR 영상을 표현하기 위하여 여러 단계의 색 공간 변환 및 스케일 변환을 거치게 된다. 이러한 여러 단계의 변환 중에서 높은 휘도 범위의 영상을 낮은 휘도 범위를 갖는 디스플레이에 출력하기 위한 톤 압축 (tone compression) 과정이 반드시 필요하다. 하지만 iCAM06에서의 톤 압축 시 자극치 간섭 및 색 절단 (color clipping)으로 인한 색 왜곡 (color distortion)이 발생하는 단점이 있다. 따라서 본 논문에서는 톤 압축 과정에서 발생된 색 왜곡을 IPT (Image Processing Transform)공간에서의 색차 정보를 이용하여 색 보상 (color correction)을 하는 방식을 제안하였다. 실험 결과를 통하여 제안한 색 보상 방식이 iCAM06를 비롯한 기존의 개선된 모델보다 우수한 결과를 나타냄을 확인할 수 있다.

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.

Wind Tunnel Test of a Canard Airplane

  • Chung, Jin-Deog;Cho, Ta-Hwan;Lee, Jang-Yeon;Sun, Bong-Zoo
    • Journal of Mechanical Science and Technology
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    • 제16권1호
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    • pp.125-131
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    • 2002
  • A low speed wind tunnel test was conducted for a canard airplane model in KARI LSWT. The purpose of the presented paper is to investigate the proper testing approach to correct tare precisely and the interference effects for the canard models which has 21% of canard-to-wing area ratio. Most of tests were performed with image system installation for various elevator deflection conditions at the flexed canard incidence angles. To evaluate the effectiveness of the image system, the obtained correction quantity at an zero elevator setting condition with image system was applied to the rest of elevator deflections and compared with the acquired results for all elevator deflections with image system. Test result showed that the amount of correction quantities were strongly dependent on the elevator deflections, and the difference in aerodynamic coefficients for two approaches was gradually amplified as the elevator deflection angles increased. An adoption of the image system was strongly recommended for the higher canard-to -wing area ratio model, if a proper level of accuracy was required.

어안렌스 카메라의 영상왜곡보정처리 시스템 구현 (Image Distortion Correction Processing System Realization for Fisheye Lens Camera)

  • 류광렬;김자환
    • 한국정보통신학회논문지
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    • 제11권11호
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    • pp.2116-2120
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    • 2007
  • 본 논문은 어안 렌즈 카메라의 영상 왜곡 보정 처리 시스템 구현에 관한 것이다. 영상 보정 처리 알고리즘은 역맵핑기법을 적용하고 실시간 처리를 위해 DSP 프로세서를 사용하여 시스템을 구현하였다. 알고리즘 적용시 카메라의 왜곡 계수는 실시간 처리를 위해 룩업 테이블화하여 처리한다. 실험 결과, 원영상과 각도변화에 대한 PSNR 변화는 8.3%정도로 안정적 자연스러우며, 화질보다는 실시간 처리에 중점을 두어 한 프레임 $720{\times}480$ 왜곡영상 처리 시간이 약 31.3ms 소요되었다.

Comparison of PET image quality using simultaneous PET/MR by attenuation correction with various MR pulse sequences

  • Park, Chan Rok;Lee, Youngjin
    • Nuclear Engineering and Technology
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    • 제51권6호
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    • pp.1610-1615
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    • 2019
  • Positron emission tomography (PET)/magnetic resonance (MR) scanning has the advantage of less additional exposure to radiation than does PET/computed tomography (CT). In particular, MR based attenuation correction (MR AC) can greatly affect the image quality of PET and is frequently obtained using various MR sequences. Thus, the purpose of the current study was to quantitatively compare the image quality between MR non-AC (MR NAC) and MR AC in PET images with three MR sequences. Percent image uniformity (PIU), percent contrast recovery (PCR), and percent background variability (PBV) were estimated to evaluate the quality of PET images with MR AC. Based on the results of PIU, 15.2% increase in the average quality was observed for PET images with MR AC than for PET images with MR NAC. In addition, 28.6% and 71.1% improvement in the average results of PCR and PBV respectively, was observed for PET images with MR AC compared with that with MR NAC. Moreover, no significant difference was observed among the average values using three MR sequences. In conclusion, the current study demonstrated that PET with MR AC improved the image quality and can be help diagnosis in all MR sequence cases.