• Title/Summary/Keyword: fresnel 변환

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Hologram Watermarking Using Fresnel Diffraction Model (Fresnel 회절 모델을 이용한 홀로그램 워터마킹)

  • Lee, Yoon-Hyuk;Seo, Young-Ho;Kim, Dong-Wook
    • Journal of Broadcast Engineering
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    • v.19 no.5
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    • pp.606-615
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    • 2014
  • This paper is to propose an algorithm for digital hologram watermarking by using a characteristic of the Fresnel diffraction model in 2D image. When 2D image is applied Fresnel transform, the result concentrates center region. When applied to a hologram, on the other hand, the result focused diffraction pattern of 2D form. Using this characteristic, to generate diffraction model by applying 2-th Fresnel transform to the hologram. Corner of diffraction model is mark space. This mark space is embedded watermark and extracted watermark. Experimental results showed that all the extracted watermarks after several kinds of attacks (Gaussian blurring, Sharpening, JPEG compression) showed visibilities good enough to be recognized to insist the ownership of the hologram.

A Data Embedding Technique for Image Watermarking using Fresnel Transform (이미지 워터마킹을 위한 Fresnel 변환을 이용한 데이타 삽입 기법)

  • Seok Kang;Yoshinao Aoki
    • Journal of KIISE:Computing Practices and Letters
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    • v.9 no.1
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    • pp.70-76
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    • 2003
  • Digital watermarking is a technique embedding hidden information into multimedia data imperceptibly such as images and sounds. Generally an original image is transformed and coded watermark data is embedded in frequency domain watermarking models. In this paper, We propose a new data embedding method using Fresnel transform. A watermark image is fresnel-transformed and the intensity of transformed pattern is embedded into original image. Our watermarking model has the flexibility In data embedding. It is possible to get many embedding patterns from a single watermark image by using various distance parameters with Fresnel transform. All kinds of image models such af shape, letter and photo ran be used as a watermark data. The watermarking experiments were conducted to show the validity of the proposed method, and the results show that our method has the robustness against lossy compression, filtering and geometric transformation.

A Color Image Watermarking Technique by Embedding a Fresnel-Transformed Pattern (Fresnel 변환 패턴의 삽입에 의한 컬러 이미지 워터마킹 기법)

  • Lee Chang-Jo;Kang Seok
    • The Journal of the Korea Contents Association
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    • v.6 no.7
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    • pp.90-98
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    • 2006
  • Digital watermarking is a technique embedding hidden information into multimedia data imperceptibly such as images and sounds. Generally an original image is transformed and coded watermark data is embedded in frequency domain watermarking models. In this paper, We propose a new color image watermarking technique using Fresnel transform. A watermark image is Fresnel - transformed and the intensity of transformed pattern is embedded into color image. In our watermarking model, an original image is converted from RGB components into YCrCb components and then the values of real number and imaginary number of a Fresnel-transformed pattern of a watermark image are embedded into Y component. The watermarking experiments were conducted to show the validity of the proposed method using PSNR value, and the results show that our method has the robustness against lossy compression like JPEG.

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A Frequency Characteristic Analysis of Digital Hologram in Fresnel Transform Domain (Fresnel 변환영역에서 디지털 홀로그램의 주파수 특성분석)

  • Choi, Hyun-Jun;Seo, Young-Ho;Kim, Dong-Wook
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.16 no.7
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    • pp.1505-1511
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    • 2012
  • Since digital hologram includes an amount of data as can be seen at the process of digitization, it is necessary that the data representing digital hologram is reduced for storing, transmission, and processing. As the efforts that are to handle hologram with a type of digital information have been increased, various methods to compress digital hologram called by fringe pattern are groped. Suitable proposal is encoding of digital hologram. This paper analyzed the properties of digital hologram using tools of frequency transform, assuming that a generated digital hologram is a 2D image by introducing Fresnel Transform. The analysis results of digital hologram to be proposed in this paper are being expected to be used as the core techniques for an encoding of digital hologram.

Digital Watermarking Algorithm for Digital Hologram based on Fresnel Transform (디지털 홀로그램을 위한 Fresnel 변환 기반의 디지털 워터마킹 알고리즘)

  • Choi, Hyun-Jun;Seo, Young-Ho;Kim, Dong-Wook
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.16 no.5
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    • pp.1040-1046
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    • 2012
  • This paper propose a digital watermarking algorithm for a digital hologram which is the most valuable image content. It is highly necessary to protect the ownership of a digital hologram. This paper introduces a watermarking scheme, a method to protect the ownership of digital holograms using the Fresnel transform domain data as the ones to be watermarked. Experiment results indicated that the proposed scheme was very imperceptible in the digital hologram and in the reconstructed holographic image. Also, they showed quite strong resistance to most of the attacks. we expect that the conclusions of this paper can be the basis for further research on the digital watermarking for digital holograms.

A Study on Two-wavelength Digital Holography Using the Fresnel-Bluestein Transform (프레즈넬-불루스타인 변환을 이용한 2파장 디지털 홀로그래픽 연구)

  • Shin, Sanghoon;Kim, Doocheol;Yu, Younghun
    • Korean Journal of Optics and Photonics
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    • v.23 no.6
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    • pp.251-254
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    • 2012
  • Dual-wavelength holography has a better axial range than single-wavelength holography, allowing unambiguous phase imaging. The size of a reconstructed image depends on the reconstruction distance and wavelength. The two phase image sizes of different wavelength holograms should be the same in order to apply dual-wavelength holography. The Fresnel-Bluestein transform method is proposed to eliminate the dependence on the reconstruction distance and wavelength. We found that the Fresnel-Bluestein transform is very useful for making different reconstructed image sizes experimentally. Also we applied the Fresnel-Bluestein transform to make the same reconstruction image size in dual wavelength holography.

Digital Hologram Encryption Algorithm using Fresnel Diffraction (프레넬 회절을 이용한 디지털 홀로그램 암호화 알고리즘)

  • Lee, Yoon-Hyuk;Seo, Young-Ho;Kim, Dong-Wook
    • Journal of Broadcast Engineering
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    • v.20 no.6
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    • pp.807-817
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    • 2015
  • This paper is to propose an encryption method for only an allowed user to see the content for a digital hologram, that is a high value-added content. This paper uses a characteristic of Fresnel transform that the object region is concentrated to a relatively small part of the diffraction plane. By encrypting the concentrated part only the region to be encrypted and in turn the amount of data to be encrypted is reduced a lot, which results in an high efficiency with low encryption rate. As the methodology, a digital hologram is first Fresnel transformed for reconstruction and the result is secondly Fresnel transformed to concentrate the energy into the center of the diffraction plane to encrypt the concentrated region only. For the 2nd transform, energy concentration degree is determined by adjusting the diffraction distance and encryption strength is determined by adjusting the scaling factor. For this we analyze the optimal encryption area according to the diffraction distance and the scaling factor. When applying the proposed method with diffraction distance of 20m the object information was visually unrecognizable with the encryption ratio only 0.005% ~ 0.02%.

Fresnel Diffraction and Fraunhoffer Diffraction (TEM 관련 이론해설 (1): 프레넬 회절과 프라운호퍼 회절)

  • Lee, Hwack-Joo
    • Applied Microscopy
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    • v.32 no.2
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    • pp.81-90
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    • 2002
  • In this review, the author discussed how the Fresnel and Fraunhoffer Diffraction can be deduced from the Huygens-Fresnel principle and Kirchhoff Diffraction Theory. Fresnel diffraction became the basic theory of the CTEM image theory, and Fraunhoffer diffraction became the base for electron diffraction and HRTEM image theory by Fourier transformation. The author also discussed the diffraction based on Born series.

Digital Hologram Encryption using Fresnel Transform (Fresnel 변환을 이용한 디지털 홀로그램 암호화)

  • Choi, Hyun-Jun;Ha, Joon;Seo, Young-Ho;Kim, Dong-Wook
    • Proceedings of the Korean Society of Broadcast Engineers Conference
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    • 2012.07a
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    • pp.409-410
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    • 2012
  • 본 논문에서는 디지털 홀로그램의 저작권 보호를 위한 영상암호화 알고리즘을 제안한다. 이 기술은 자연영상과는 상이한 특성을 보이는 디지털 홀로그램의 화소분포를 고려하여, 디지털 홀로그램을 복원영역으로 변환한 후 데이터의 일부분을 암호화 하는 기법이다. 실험결과 제안한 암호화 알고리즘은 디지털 홀로그램 데이터의 일부분만을 조작하여 홀로그래픽 복원영상을 효율적으로 은닉하는 것을 확인할 수 있었다.

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A Robust Digital Watermarking based on Virtual Optics (가상 광학에 기반한 강인한 디지털 워터마킹)

  • Lee, Geum-Boon;Cho, Beom-Joon
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.15 no.5
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    • pp.1073-1080
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    • 2011
  • In this paper, we propose a novel digital watermarking method by virtual optics which secures multimedia information such as images, videos and sounds. To secure the multimedia data, we use Fresnel transform which describes the diffraction phenomena of the waves. Also, this method attaches the random phase function to Fresnel transform so that original image and watermark image would be gaussian random vectors. The complex numbers of watermark by Fresnel transform are separated the real part and the imaginary part. The former is embedded in original image as a encoding key imperceptibly and the latter is used for detecting the watermark as a decoding key. This method for digital watermarking ensures that watermark can be successfully registered and extracted from the watermarked image. Further, it provides the robustness to signal processing operation and geometric distortion and proves the strong resilience against cropping attack. The performance evaluation of the experiment is carried out with PSNR, and the numerical simulation results show the efficiency of the proposed method.