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    KCI등재

    Automatic Video Chromakeying Generation Technology Using Background Modeling = 배경 모델링을 이용한 비디오 크로마키 생성기법

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    https://www.riss.kr/link?id=A107901215

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    In online meetings and classes using webcams, the chromakey technique is a very necessary part to produce content. We proposed a technology that enables background synthesis without using a cloth for chromakey. The proposed method consists of three steps: an HSI image conversion step, a step of detecting a region changed from a background, and a step of replacing the background region with a chromakey and applying it. In the input video, the block average image of each frame is calculated, and the difference between the block average image of the background image and the block average image of the input image is used to detect the change area. The developed chromakey effect technology uses a technique of acquiring a background image without an object from a single camera and extracting only an object by distinguishing the moving object and the background. The proposed method is not only capable of processing even if the background has a variety of colors, but also has the seamless processing of the boundary lines of objects.
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    In online meetings and classes using webcams, the chromakey technique is a very necessary part to produce content. We proposed a technology that enables background synthesis without using a cloth for chromakey. The proposed method consists of three st...

    In online meetings and classes using webcams, the chromakey technique is a very necessary part to produce content. We proposed a technology that enables background synthesis without using a cloth for chromakey. The proposed method consists of three steps: an HSI image conversion step, a step of detecting a region changed from a background, and a step of replacing the background region with a chromakey and applying it. In the input video, the block average image of each frame is calculated, and the difference between the block average image of the background image and the block average image of the input image is used to detect the change area. The developed chromakey effect technology uses a technique of acquiring a background image without an object from a single camera and extracting only an object by distinguishing the moving object and the background. The proposed method is not only capable of processing even if the background has a variety of colors, but also has the seamless processing of the boundary lines of objects.

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    참고문헌 (Reference)

    1 Ivan Vishniakou, "Virtual reality for animal navigation with camera-based optical flow tracking" Elsevier BV 327 : 108403-, 2019

    2 S. R. Rodrigues, "The Generation of Scenes in Mixed Reality Environments using the Chromakey Technique" 296-297, 2007

    3 L. Liu, "Target Detection and Extraction Based on Motion Attention Model" 1919-1922, 2018

    4 Yi Kong, "Spectral–Spatial Feature Extraction for HSI Classification Based on Supervised Hypergraph and Sample Expanded CNN" Institute of Electrical and Electronics Engineers (IEEE) 11 (11): 4128-4140, 2018

    5 Swati, "Higher order Emden–Fowler type equations via uniform Haar Wavelet resolution technique" Elsevier BV 376 : 112836-, 2020

    6 Lingfei Song, "Fast HSI super resolution using linear regression" Institution of Engineering and Technology (IET) 13 (13): 1671-1679, 2019

    7 B. Naik, "Extra-tree learning based Socio-economic factor analysis and multi-class adaptive boosting meta-estimator for prediction of agricultural productivity" 13 (13): 2081-2101, 2020

    8 A. Yamashita, "Every color chromakey" 1-4, 2008

    9 G. S. Yoo, "Embedding QR code in the wavelet domain of image for metadata hiding" 9 (9): 1-10, 2016

    10 C. Yang, "Embedded moving image detection based on background subtraction and finite difference method" 68-71, 2012

    1 Ivan Vishniakou, "Virtual reality for animal navigation with camera-based optical flow tracking" Elsevier BV 327 : 108403-, 2019

    2 S. R. Rodrigues, "The Generation of Scenes in Mixed Reality Environments using the Chromakey Technique" 296-297, 2007

    3 L. Liu, "Target Detection and Extraction Based on Motion Attention Model" 1919-1922, 2018

    4 Yi Kong, "Spectral–Spatial Feature Extraction for HSI Classification Based on Supervised Hypergraph and Sample Expanded CNN" Institute of Electrical and Electronics Engineers (IEEE) 11 (11): 4128-4140, 2018

    5 Swati, "Higher order Emden–Fowler type equations via uniform Haar Wavelet resolution technique" Elsevier BV 376 : 112836-, 2020

    6 Lingfei Song, "Fast HSI super resolution using linear regression" Institution of Engineering and Technology (IET) 13 (13): 1671-1679, 2019

    7 B. Naik, "Extra-tree learning based Socio-economic factor analysis and multi-class adaptive boosting meta-estimator for prediction of agricultural productivity" 13 (13): 2081-2101, 2020

    8 A. Yamashita, "Every color chromakey" 1-4, 2008

    9 G. S. Yoo, "Embedding QR code in the wavelet domain of image for metadata hiding" 9 (9): 1-10, 2016

    10 C. Yang, "Embedded moving image detection based on background subtraction and finite difference method" 68-71, 2012

    11 A. Ajam, "Content-based Image Retrieval Using Color Difference Histogram in Image Textures" 1-6, 2019

    12 Alvy Ray Smith, "Color gamut transform pairs" Association for Computing Machinery (ACM) 12 (12): 12-19, 1978

    13 M. Piccardi., "Background subtraction techniques: a review/ Systems, Man and Cybernetics" 4 : 3099-3104, 2004

    14 Glenn J. Tattersall, "Activity analysis of thermal imaging videos using a difference imaging approach" Elsevier BV 91 : 102611-, 2020

    15 G. A. Khaskheli, "A mediation analysis of social media marketing between the relationship of entrepreneurial marketing strategies and the performance of small &medium enterprises in Pakistan" 13 (13): 2024-2034, 2020

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    학술지 이력

    학술지 이력
    연월일 이력구분 이력상세 등재구분
    2025 평가 신규평가 신청대상 (신규평가)
    2022-06-01 등재 등재학술지 취소
    2019-01-01 등재 등재학술지 유지 (계속평가) KCI등재
    2016-01-01 등재 등재학술지 선정 (계속평가) KCI등재
    2014-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    학술지 인용정보

    학술지 인용정보
    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 5.85 5.85 0
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0 0 0 0.76
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