• Title/Summary/Keyword: 영상 복호화

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Image Encryption and Decryption System using Frequency Phase Encoding and Phase Wrapping Method (주파수 위상 부호화와 위상 랩핑 방법을 이용한 영상 암호화 및 복호화 시스템)

  • Seo, Dong-Hoan;Shin, Chang-Mok;Cho, Kyu-Bo
    • Korean Journal of Optics and Photonics
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    • v.17 no.6
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    • pp.507-513
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    • 2006
  • In this paper, we propose an improved image encryption and fault-tolerance decryption method using phase wrapping and phase encoding in the frequency domain. To generate an encrypted image, an encrypting key which denotes the product of a phase-encoded virtual image, not an original image, and a random phase image is zero-padded and Fourier transformed and its real-valued data is phase-encoded. The decryption process is simply performed by performing the inverse Fourier transform for multiplication of the encrypted key with the decrypting key, made of the proposed phase wrapping method, in the output plane with a spatial filter. This process has the advantages of solving optical alignment and pixel-to-pixel mapping problems. The proposed method using the virtual image, which does not contain any information from the original image, prevents the possibility of counterfeiting from unauthorized people and also can be used as a current spatial light modulator technology by phase encoding of the real-valued data. Computer simulations show the validity of the encryption scheme and the robustness to noise of the encrypted key or the decryption key in the proposed technique.

A Study on Decoding Characteristic Analysis of Non-iterative Fractal Image Compression (무반복 프랙탈 영상 압축의 복호 특성 분석에 관한 연구)

  • Kwak No-Yoon
    • Journal of Digital Contents Society
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    • v.5 no.3
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    • pp.199-204
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    • 2004
  • A problem of many fractal image compression algorithms providing good quality at low bit rate is that the decoding time rests on an iterative procedure whose complexity is imag-dependent. This paper proposes an iterative-free fractal image decoding algorithm to reduce the decoding time. In the proposed method, under the encoder previously with the same codebook image as an initial image to be used at the decoder, the fractal coefficients are obtained through calculating the similarity between the codebook image and an input image to be encoded. As the decoding time could be remarkably reduced. For verifying the validity and universality of proposed method, We evaluated and analyzed the performance of decoding time and image quality for a number of still images and a moving picture with different distributed characteristics.

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Hierarchical Image Encryption System Using Orthogonal Method (직교성을 이용한 계층적 영상 암호화)

  • Kim, Nam-Jin;Seo, Dong-Hoan;Lee, Sung-Geun;Shin, Chang-Mok;Cho, Kyu-Bo;Kim, Soo-Joong
    • Korean Journal of Optics and Photonics
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    • v.17 no.3
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    • pp.231-239
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    • 2006
  • In recent years, a hierarchical security architecture has been widely studied because it can efficiently protect information by allowing an authorized user access to the level of information. However, the conventional hierarchical decryption methods require several decryption keys for the high level information. In this paper, we propose a hierarchical image encryption using random phase masks and Walsh code having orthogonal characteristics. To decrypt the hierarchical level images by only one decryption key, we combine Walsh code into the hierarchical level system. For encryption process, we first perform a Fourier transform for the multiplication results of the original image and the random phase mask, and then expand the transformed pattern to be the same size and shape of Walsh code. The expanded pattern is finally encrypted by multiplying with the Walsh code image and the binary phase mask. We generate several encryption images as the same encryption process. The reconstruction image is detected on a CCD plane by a despread process and Fourier transform for the multiplication result of encryption image and hierarchical decryption keys which are generated by Walsh code and binary random phase image. Computer simulations demonstrate that the proposed technique can decrypt hierarchical information by using only one level decryption key image and it has a good robustness to the data loss such as random cropping.

Development of an additive video-stream insertion algorithm on the H.261 video stream (H.261 비디오 스트림상의 부가영상 삽입 알고리즘 개발)

  • 이성우;오하령;성영락
    • Proceedings of the Korean Information Science Society Conference
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    • 2000.04b
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    • pp.426-428
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    • 2000
  • 화상회의 시스템의 영상 압축표준 중 하나인 H.261은 화상전화기에서 주로 사용되고 있다. 본 논문에서는 기존의 H.261 영상에 부가영상을 삽입하는 방법을 제안한다. H.261 영상에 단순히 부가영상을 삽입하면 움직임보상 데이터 처리를 하지 않기 때문에 전달된 H.261 영상으로부터 원래의 영상을 복원하기 어렵다. 이를 해결하는 방법으로 원시 H.261 영상 전체를 복호화 한 후 부가영상을 삽입하고 다시 부호화 하는 방법이 있으나 이 경우 처리해 주어야 할 데이터가 너무 많아 수행속도의 저하를 가져온다. 제안한 방법은 움직임 보상 정보가 영상에 아무 영향을 미치지 않을 경우에는 허프만 복/부호화만을 사용하여 단순 삽입을 하고, 움직임 보상 정보가 부가영상과 겹치게 되어 부가 영상이 포함된 영상을 전달 받는 측에서 문제가 될 경우만 복호화해 두었던 영상데이터를 보낸다. 간단한 실험을 통하여 제안된 알고리즘의 성능을 분석한 결과 전체를 복/부호화하는 방법에 비하여 대략 3배의 속도의 향상을 보였다.

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CNN Based In-loop Filter in Versatile Video Coding (VVC) (CNN 기반의 VVC 인-루프 필터 설계)

  • Moon, Hyeonchul;Kim, Jae-Gon
    • Proceedings of the Korean Society of Broadcast Engineers Conference
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    • 2018.06a
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    • pp.270-271
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    • 2018
  • 본 논문에서는 새로이 시작된 비디오 압축 표준인 VVC(Versatile Video Coding)의 인-루프(in-loop) 필터링을 위한 CNN 구조를 제안한다. 제안하는 CNN 구조는 복호화된 영상을 입력으로 하고 원본 영상과 복호화된 영상의 오차를 손실함수로 사용하여 학습을 진행한다. 또한, 비디오 부호화에서의 다양한 크기의 CU(Coding Unit)를 고려한 다양한 크기의 컨볼루션 필터를 사용하여 특징을 추출하는 구조에 기반하고 있다. 실험을 통하여 제안한 CNN 기반의 필터링이 VVC 의 시험모델인 VTM(VVC Test Model)의 인-루프 필터링의 성능을 개선할 수 있음을 확인하였다.

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Performance Analysis of HEVC Decoder Parallelization based on Slice and Tile for Ultra-High Definition Video (초고해상도 비디오를 위한 분할 영상 기반 HEVC 복호화기 병렬화)

  • Son, SoHee;Baek, A-Ram;Choi, Haechul
    • Proceedings of the Korean Society of Broadcast Engineers Conference
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    • 2016.06a
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    • pp.359-360
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    • 2016
  • 본 논문에서는 초고화질의 비디오 실시간 복호화를 위해 HEVC(High Efficiency Video Coding)에서 지원하는 병렬화 기술인 Slice와 Tile 기술을 이용하여 초고해상도 영상에 대한 복호화기 병렬화 성능을 비교한다. Slice와 Tile은 분할 데이터간 의존성이 존재하지 않으므로 분할된 데이터를 다중 스레드에 할당하여 데이터-레벨 병렬화를 수행하였다. 실험 결과에서는 병렬화된 복호화기 성능이 기존 순차 복호화기에 비해 최대 2.08배 고속화 되었고, 분할 데이터 수가 증가하여도 화질 손실이 거의 없는 결과를 보인다.

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Tile, Slice, and Deblocking Filter Parallelization Method in HEVC (HEVC 복호기에서의 타일, 슬라이스, 디블록킹 필터 병렬화 방법)

  • Son, Sohee;Baek, Aram;Choi, Haechul
    • Journal of Broadcast Engineering
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    • v.22 no.4
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    • pp.484-495
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    • 2017
  • The development of display devices and the increase of network transmission bandwidth bring demands for over 2K high resolution video such as panorama video, 4K ultra-high definition commercial broadcasting, and ultra-wide viewing video. To compress these image sequences with significant amount of data, High Efficiency Video Coding (HEVC) standard with the highest coding efficiency is a promising solution. HEVC, the latest video coding standard, provides high encoding efficiency using various advanced encoding tools, but it also requires significant amounts of computation complexity compared to previous coding standards. In particular, the complexity of HEVC decoding process is a imposing challenges on real-time playback of ultra-high resolution video. To accelerate the HEVC decoding process for ultra high resolution video, this paper introduces a data-level parallel video decoding method using slice and/or tile supported by HEVC. Moreover, deblocking filter process is further parallelized. The proposed method distributes independent decoding operations of each tile and/or each slice to multiple threads as well as deblocking filter operations. The experimental results show that the proposed method facilitates executions up to 2.0 times faster than the HEVC reference software for 4K videos.

An Improvement of Image Encryption using Binary Phase Computer Generated Hologram and Multi XOR Operations (이진위상 컴퓨터형성홀로그램과 다중 XOR 연산을 이용한 영상 암호화의 개선)

  • Kim, Cheol-Su
    • Journal of Korea Society of Industrial Information Systems
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    • v.13 no.3
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    • pp.110-116
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    • 2008
  • In this paper, we proposed an improvement technique of image encryption using binary phase computer generated hologram(BPCGH) and multi exclusive-OR(XOR) operations. For the encryption process, a BPCGH that reconstructs the original image is designed, using an iterative algorithm, and the resulting hologram is regarded as the image to be encrypted. The BPCGH is encrypted through the exclusive-OR operation with the random generated phase key image. Then the encrypted image is divided into several slide images using XOR operations. So, the performance of encryption for the image is improved. For the decryption process, we cascade the encrypted slide images and phase key image and interfere with reference wave. Then decrypted hologram image is transformed into phase information. Finally, the original image is recovered by an inverse Fourier transformation of the phase information. If the slide images are changed, we can get various decrypted BPCGH images. In the proposed security system, without a random generated key image, the original image can not be recovered. And we recover another hologram pattern according to the slide images, so it can be used in the differentiated authorization system.

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Selective B Slice Skip Decoding for Complexity Scalable H.264/AVC Video Decoder (H.264/AVC 복호화기의 복잡도 감소를 위한 선택적 B 슬라이스 복호화 스킵 방법)

  • Lee, Ho-Young;Kim, Jae-Hwan;Jeon, Byeung-Woo
    • Journal of the Institute of Electronics Engineers of Korea SP
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    • v.48 no.3
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    • pp.79-89
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    • 2011
  • Recent development of embedded processors makes it possible to play back video contents in real-time on portable devices. Because of their limited battery capacity and low computational performance, however, portable devices still have significant problems in real-time decoding of high quality or high resolution compressed video. Although previous approaches are successful in achieving complexity-scalable decoder by controlling computational complexity of decoding elements, they cause significant objective quality loss coming from mismatch between encoder and decoder. In this paper, we propose a selective B slice skip-decoding method to implement a low complexity video decoder. The proposed method performs selective skip decoding process of B slice which satisfies the proposed conditions. The skipped slices are reconstructed by simple reconstruction method utilizing adjacent reconstructed pictures. Experimental result shows that proposed method not only reduces computational complexity but also maintains subjective visual quality.

Optical encryption and decryption technique using virtual image in frequency domain (가상 영상을 이용한 주파수 영역에서의 광학적 암호화 및 복호화 방법)

  • 서동환;조규보;박세준;김수중;김정우;노덕수
    • Korean Journal of Optics and Photonics
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    • v.14 no.3
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    • pp.255-259
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    • 2003
  • In this paper, we propose an improved image encryption and decryption method using a virtual image and a joint transform correlator (JTC). The encrypted image is obtained by the Fourier transform of the product of a virtual-phase image and a random-phase image, and a Fourier transform of the decrypting key generated by the proposed phase assignment rule is used as the Fourier decrypting key. Based on the solution, the original image is reconstructed using JTC in the frequency-domain. The proposed method using a virtual image, which does not contain any information from the original image, prevents the possibility of counterfeiting by unauthorized people. And also the auto-correlation terms, which are the drawback of a JTC system, contribute to reconstructing the original image rather than to disturbing its identification. But because phase-only encryptions are sensitive to noise and scratches, phase errors can be generated in fabricating the encrypted image or the Fourier decrypting key so the errors that are responsible for degradation of the quality of the reconstructed image are analyzed and the solution is demonstrated. Computer simulations show the solution, and the proposed method is very useful for JTC architecture.