• Title/Summary/Keyword: Computer generated hologram

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Digital Hologram Compression Technique By Hybrid Video Coding (하이브리드 비디오 코팅에 의한 디지털 홀로그램 압축기술)

  • Seo, Young-Ho;Choi, Hyun-Jun;Kang, Hoon-Jong;Lee, Seung-Hyun;Kim, Dong-Wook
    • Journal of the Institute of Electronics Engineers of Korea SP
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    • v.42 no.5 s.305
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    • pp.29-40
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    • 2005
  • According as base of digital hologram has been magnified, discussion of compression technology is expected as a international standard which defines the compression technique of 3D image and video has been progressed in form of 3DAV which is a part of MPEG. As we can identify in case of 3DAV, the coding technique has high possibility to be formed into the hybrid type which is a merged, refined, or mixid with the various previous technique. Therefore, we wish to present the relationship between various image/video coding techniques and digital hologram In this paper, we propose an efficient coding method of digital hologram using standard compression tools for video and image. At first, we convert fringe patterns into video data using a principle of CGH(Computer Generated Hologram), and then encode it. In this research, we propose a compression algorithm is made up of various method such as pre-processing for transform, local segmentation with global information of object image, frequency transform for coding, scanning to make fringe to video stream, classification of coefficients, and hybrid video coding. Finally the proposed hybrid compression algorithm is all of these methods. The tool for still image coding is JPEG2000, and the toots for video coding include various international compression algorithm such as MPEG-2, MPEG-4, and H.264 and various lossless compression algorithm. The proposed algorithm illustrated that it have better properties for reconstruction than the previous researches on far greater compression rate above from four times to eight times as much. Therefore we expect that the proposed technique for digital hologram coding is to be a good preceding research.

Image-Quality Enhancement for a Holographic Wavefront Color Printer by Adaptive SLM Partitioning

  • Hong, Sunghee;Stoykova, Elena;Kang, Hoonjong;Kim, Youngmin;Hong, Jisoo;Park, Joosup;Park, Kiheon
    • Journal of the Optical Society of Korea
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    • v.19 no.1
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    • pp.29-37
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    • 2015
  • The wavefront printer records a volume-reflection hologram as a two-dimensional array of elemental holograms from computer-generated holograms (CGHs) displayed on a spatial light modulator (SLM). The wavefront coming from the object is extracted by filtering in the spatial-frequency domain. This paper presents a method to improve color reproduction in a wavefront printer with spatial division of exposures at primary colors, by adaptive partitioning of the SLM in accordance with the color content encoded in the input CGHs, and by the controllable change of exposure times for the recording of primary colors. The method is verified with a color wavefront printer with demagnification of the object beam. The quality of reconstruction achieved by the proposed method proves its efficiency in eliminating the stripe artifacts that are superimposed on reconstructed images in conventional mosaic recording.

Korean Alphabets Recognition Using the Modified CGH Multiplexed Matched Filter (변조된 CGH 다중 정합 필터를 사용한 한글 자모 인식)

  • Jeong, Jae Woo;Kim, Hong Man;Lee, Yong Tag;Kang, Min Ho
    • Journal of the Korean Institute of Telematics and Electronics
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    • v.23 no.3
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    • pp.401-408
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    • 1986
  • In optical pattern recognition, incorrect discrimination may result from a relatively high cross correlation peak between similary shaped objects. In this paper, a new modified matched CGH(computer generated hologram) filter is proposed for reducing the cross-correlation without reducing the autocorrelation. Computer simulation and experimental results show that this new method can be used efficiently for optical Korean alphabets recognition. The signal to noise characteristics are analyzed on the correlation distdribution diagram.

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Design of Multi-phase Holographic Optical Low-pass Filter for the Improvement of the MTF Characteristics (홀로그램 광 저대역 필터의 MTF 특성 개선을 위한 다중 위상 설계)

  • Oh, Yong-Ho;Go, Chun-Soo
    • Korean Journal of Optics and Photonics
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    • v.16 no.4
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    • pp.334-339
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    • 2005
  • We studied the spatial filtering characteristics of a multi-phase hologram optical low-pass filter(HOLF). Using the Monte-Carlo based hologram generation program, we designed holograms whose diffraction patterns are circular shaped 21 beams and calculated the diffraction efficiencies and MTFs. 4-phase HOLF have the same diffraction efficiency as that of 2-phase HOLF. The MTF graphs of the two are also nearly alike. But 8-phase HOLF shows higher efficiency than those previously discussed and has larger MTF values in the low frequency region. 16-phase HOLF has just a little better characteristics than 8-phase. Considering the errors which can arise in the process of making holograms, 8-phase HOLF fits the goal of improving the resolution of spatial filter. We also fabricated 8-phase HOLF and .measured MTF The experimental results agree well with the theoretical expectations.

A hybrid algorithm for the synthesis of computer-generated holograms

  • Nguyen The Anh;An Jun Won;Choe Jae Gwang;Kim Nam
    • Proceedings of the Optical Society of Korea Conference
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    • 2003.07a
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    • pp.60-61
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    • 2003
  • A new approach to reduce the computation time of genetic algorithm (GA) for making binary phase holograms is described. Synthesized holograms having diffraction efficiency of 75.8% and uniformity of 5.8% are proven in computer simulation and experimentally demonstrated. Recently, computer-generated holograms (CGHs) having high diffraction efficiency and flexibility of design have been widely developed in many applications such as optical information processing, optical computing, optical interconnection, etc. Among proposed optimization methods, GA has become popular due to its capability of reaching nearly global. However, there exits a drawback to consider when we use the genetic algorithm. It is the large amount of computation time to construct desired holograms. One of the major reasons that the GA' s operation may be time intensive results from the expense of computing the cost function that must Fourier transform the parameters encoded on the hologram into the fitness value. In trying to remedy this drawback, Artificial Neural Network (ANN) has been put forward, allowing CGHs to be created easily and quickly (1), but the quality of reconstructed images is not high enough to use in applications of high preciseness. For that, we are in attempt to find a new approach of combiningthe good properties and performance of both the GA and ANN to make CGHs of high diffraction efficiency in a short time. The optimization of CGH using the genetic algorithm is merely a process of iteration, including selection, crossover, and mutation operators [2]. It is worth noting that the evaluation of the cost function with the aim of selecting better holograms plays an important role in the implementation of the GA. However, this evaluation process wastes much time for Fourier transforming the encoded parameters on the hologram into the value to be solved. Depending on the speed of computer, this process can even last up to ten minutes. It will be more effective if instead of merely generating random holograms in the initial process, a set of approximately desired holograms is employed. By doing so, the initial population will contain less trial holograms equivalent to the reduction of the computation time of GA's. Accordingly, a hybrid algorithm that utilizes a trained neural network to initiate the GA's procedure is proposed. Consequently, the initial population contains less random holograms and is compensated by approximately desired holograms. Figure 1 is the flowchart of the hybrid algorithm in comparison with the classical GA. The procedure of synthesizing a hologram on computer is divided into two steps. First the simulation of holograms based on ANN method [1] to acquire approximately desired holograms is carried. With a teaching data set of 9 characters obtained from the classical GA, the number of layer is 3, the number of hidden node is 100, learning rate is 0.3, and momentum is 0.5, the artificial neural network trained enables us to attain the approximately desired holograms, which are fairly good agreement with what we suggested in the theory. The second step, effect of several parameters on the operation of the hybrid algorithm is investigated. In principle, the operation of the hybrid algorithm and GA are the same except the modification of the initial step. Hence, the verified results in Ref [2] of the parameters such as the probability of crossover and mutation, the tournament size, and the crossover block size are remained unchanged, beside of the reduced population size. The reconstructed image of 76.4% diffraction efficiency and 5.4% uniformity is achieved when the population size is 30, the iteration number is 2000, the probability of crossover is 0.75, and the probability of mutation is 0.001. A comparison between the hybrid algorithm and GA in term of diffraction efficiency and computation time is also evaluated as shown in Fig. 2. With a 66.7% reduction in computation time and a 2% increase in diffraction efficiency compared to the GA method, the hybrid algorithm demonstrates its efficient performance. In the optical experiment, the phase holograms were displayed on a programmable phase modulator (model XGA). Figures 3 are pictures of diffracted patterns of the letter "0" from the holograms generated using the hybrid algorithm. Diffraction efficiency of 75.8% and uniformity of 5.8% are measured. We see that the simulation and experiment results are fairly good agreement with each other. In this paper, Genetic Algorithm and Neural Network have been successfully combined in designing CGHs. This method gives a significant reduction in computation time compared to the GA method while still allowing holograms of high diffraction efficiency and uniformity to be achieved. This work was supported by No.mOl-2001-000-00324-0 (2002)) from the Korea Science & Engineering Foundation.

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A System Architecture for Digital Holographic Video Service (디지털 홀로그래픽 비디오 서비스 시스템의 구조)

  • Seo, Young-Ho;Bae, Yoon-Jin;Choi, Hyun-Jun;Yoo, Ji-Sang;Kim, Dong-Wook
    • Proceedings of the Korean Society of Broadcast Engineers Conference
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    • 2010.11a
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    • pp.21-22
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    • 2010
  • 본 논문에서는 디지털 홀로그래피 방식의 비디오 서비스를 위한 서비스 시스템의 구조를 제안하고자 한다. 실사 영상의 디지털 홀로그래피 서비스를 위해서 레이저를 이용한 광학적인 홀로그램 획득이 아닌 실사 기반의 홀로그램 획득 방법을 이용한다. 실사 기반의 홀로그램 획득 방법에는 스테레오 및 다시점 카메라, 그리고 깊이 카메라를 이용하는 것들이 포함된다. 각 카메라 시스템으로 획득된 정보는 깊이와 RGB 정보로 만들어진 후에 컴퓨터 생성 홀로그램(computer-generated hologram, CGH) 과정을 거치면서 홀로그램이 된다. 생성된 홀로그램은 SLM(spatical light modulator)를 통해서 복원되어 영상 서비스를 제공한다. 또한 디지털 홀로그램 기반의 비디오 서비스를 위한 신호처리 기법들을 종합적으로 논의하고, 마지막으로 스테레오 및 깊이 카메라 기반의 홀로그램 생성 결과들을 보인다.

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The CGH in the Electro-holographic system using the Bragg type AOSLM (Bragg type 음향광변조기를 채택한 Electro-holographic system에서의 computer generated Fresnel hologram의 구현)

  • ;;;;Tru Thi Van Anh
    • Proceedings of the Optical Society of Korea Conference
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    • 2002.07a
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    • pp.142-143
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    • 2002
  • KIST에서는 Pulsed Laser를 사용하여 3차원 image를 재생할 수 있는 Electro-Holographic System을 만들어 CGH이미지를 구현하였다. CGH 이미지를 구현하기 위한 SLM (Spatial Light Modulator)으로 TeO$_2$ 결정의 Shear Mode 에서 동작하는 Bragg type의 다채널 AOSLM(Acousto-optic Spatial Light Modulator)이 사용되었다. 이 Bragg type 다채널 AOSLM에서는 광원이 특정 Bragg 각도로 입사하였을 때 다른 고위 차수는 억압되고 +나 -의 첫번째 차수의 회절 빔만이 형성된다. (중략)

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DCT영역에 기반한 반복적 이진위상컴퓨터형성홀로그램을 이용한 디지털 영상 워터마킹 기술

  • Kim, Cheol-Su
    • Proceedings of the Korea Society for Industrial Systems Conference
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    • 2009.05a
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    • pp.32-36
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    • 2009
  • 본 논문에서는 DCT영역에서 반복적 이진위상컴퓨터형성홀로그램을 이용한 디지털 영상 워터마킹 기술을 제안하였다. 워터마크로 주로 사용되는 랜덤 시퀸스 또는 로고와 같은 은닉영상 대신 은닉영상을 손실없이 재생할 수 있는 이진위상컴퓨터형성홀로그램을 생성하고, 이를 반복적으로 표현해서 워터마크로 사용한다. 그리고 이 워터마크를 호스트영상의 DCT 계수에 적절한 규칙을 통해 가중치를 부여하여 삽입한 후, IDCT한다. 워터마크의 추출은 워터마킹된 영상과 호스트영상을 DCT하고, 삽입시 적용한 규칙을 통해서 수행한다. 그리고 추출된 워터마크의 역푸리에 변환과 호스트영상에 삽입하기전의 워터마크를 역푸리에 변환하여 재생한 은닉영상과의 상관을 취함으로써 워터마크의 존재여부를 검증한다. 제안한 방법은 워터마크 삽입/추출시 반복되는 홀로그램정보를 활용하고, 이진 값으로 구성되어 있으므로 기존의 어떠한 워터마킹 기술보다 외부 공격에 견실한 특징을 가지고 있으며, 컴퓨터 시뮬레이션을 통해 그 성능을 확인하였다.

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디지털 홀로그램의 고속생성 기술 동향

  • Choe, Hyeon-Jun;Seo, Yeong-Ho;Yu, Ji-Sang;Kim, Dong-Uk
    • Broadcasting and Media Magazine
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    • v.16 no.2
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    • pp.109-117
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    • 2011
  • 디지털 홀로그래피는 현재 입체영상 서비스의 주류를 이루고 있는 스테레오스코픽(Stereoscophic)이나 다시점(Multi-view) 3D와 달리 주어진 관찰각도에서 관찰자의 위치에 따른 입체영상을 볼 수 있다. 또한 입체영상을 디스플레이하는 장치가 물리적 매체가 아닌 공간으로 한다는 점에서도 차이가 있다. 최근 홀로그래피, 홀로그램이란 용어가 상업적인 용도로 사용되면서 해당기술의 본질적인 의미가 상당히 변질되는 경우가 많이 있다. 본 기고에서는 일부에서 변질/왜곡하여 사용하고 있는 "유사한 홀로그래피(Fake holography)"가 아닌 간섭현상(Interference)을 수학적으로 모델링한 후 이를 컴퓨터에서 계산하여 디지털 홀로그램을 생성하는 컴퓨터 생성 홀로그램(Computer-Generated Hologram, CGH) 기술을 다룬다. 특히, 국내외의 연구개발 결과 중에서 전용 하드웨어나 범용 프로세서 등을 이용해 CGH 연산을 고속화하는 기술에 중점을 두었다.

Parametric Study for a Diffraction Optics Fabrication by Using a Direct Laser Lithographic System (회절광학소자 제작을 위한 레이저 직접 노광기의 공정실험)

  • Kim, Young-Gwang;Rhee, Hyug-Gyo;Ghim, Young-Sik;Lee, Yun-Woo
    • Journal of the Korean Society for Precision Engineering
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    • v.33 no.10
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    • pp.845-850
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    • 2016
  • A direct laser lithography system is widely used to fabricate various types of DOEs (Diffractive Optical Elements) including lenses made as CGH (Computer Generated Hologram). However, a parametric study that uniformly and precisely fabricates the diffractive patterns on a large area (up to $200mm{\times}200mm$) has not yet been reported. In this paper, four parameters (Focal Position Error, Intensity Variation of the Lithographic Beam, Patterning Speed, and Etching Time) were considered for stabilization of the direct laser lithography system, and the experimental results were presented.