• Title/Summary/Keyword: Adaptive Interpolation Filter

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Design of a Low Power Digital Filter Using Variable Canonic Signed Digit Coefficients (가변 CSD 계수를 이용한 저전력 디지털 필터의 설계)

  • Kim, Yeong-U;Yu, Jae-Taek;Kim, Su-Won
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.38 no.7
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    • pp.455-463
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    • 2001
  • In this Paper, an approximate processing method is proposed and tested. The proposed method uses variable CSD (VCSD) coefficients which approximate filter stopband attenuation by controlling the precision of the CSD coefficient sets. A decimation filter for Audio Codec '97 specifications has been designed having processor architecture that consists of program/data memory, arithmetic unit, energy/level decision, and sinc filter blocks, and fabricated with 0.6${\mu}{\textrm}{m}$ CMOS sea-of-gate technology. For the combined two halfband FIR filters in decimation filter, the number of addition operations were reduced to 63.5%, 35.7%, and 13.9%, compared to worst-case which is not an adaptive one. Experimental results show that the total power reduction rate of the filter is varying from 3.8 % to 9.0 % with respect to worst-case. The proposed approximate processing method using variable CSD coefficients is readily applicable to various kinds of filters and suitable, especially, for the speech and audio applications, like oversampling ADCs and DACs, filter banks, voice/audio codecs, etc.

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An Efficient Intra-Field Deinterlacing Algorithm using Edges Extracted from the Interpolated Binary Image (보간된 이진 영상으로부터 검출된 정확한 에지를 이용한 효율적인 디인터레이싱 알고리즘)

  • Son, Joo-Yung;Lee, Sang-Hoon;Lee, Dong-Ho
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.34 no.5C
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    • pp.514-520
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    • 2009
  • This paper proposes a new deinterlacing algorithm which improves the performance of the spatial filter. Extracting exact edges is very important element of deinterlacing performance. So the proposed algorithm has interpolated locally adaptive-thresholded binary image, and extracted exact edges from the interpolated binary image. The values of pixels on edges extracted from binary image are interpolated using neighborhood lines on the same edge. With computer simulations for a variety of images, it is shown that the proposed algorithm is much better than traditional methods.

Spatially Adaptive Color Demosaicing of Noisy Bayer Data (잡음을 고려한 공간적응적 색상 보간)

  • Kim, Chang-Won;Yoo, Du-Sic;Kang, Moon-Gi
    • Journal of the Institute of Electronics Engineers of Korea SP
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    • v.47 no.2
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    • pp.86-94
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    • 2010
  • In this paper, we propose spatially adaptive color demosaicing of noisy Bayer data. When sensor noises are not considered in demosaicing, they may degrade result image. In order to obtain high resolution image, sensor noises are considered in the color demosaicing step. We identify flat, edge and pattern regions at each pixel location to improve the performance of the algorithm and to reduce complexity. Based on the pre-classified regions, the demosaicing of the G channel is performed using the local statistics to reduce the interpolation error. The sensor noise is simultaneously removed by a modified version of non-local mean filter in the green and in the color difference domain. The R and B channels are interpolated easily using fully interpolated and denoised G and color difference values. Experimental results show that the proposed method achieves a significant improvement in terms of visual and numerical criteria, when compared to conventional methods.

De-interlacing Algorithm based on Motion Compensation Reliability (움직임 보상의 신뢰도에 기반 한 순차주사화 알고리즘)

  • Chang, Joon-Young;Kim, Young-Duk;Kang, Moon-Gi
    • Journal of the Institute of Electronics Engineers of Korea SP
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    • v.46 no.6
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    • pp.102-111
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    • 2009
  • In this paper, we propose a de-interlacing algorithm that combines a motion compensation (MC) method and the vertical-temporal filter with motion compensation (MC V-T filter) according to motion compensation reliability. The MC method represent one of the best ways of improving the resolution of de-interlaced frames, but it may introduce motion compensation artifacts in regions with incorrect motion information. In these regions, the MC V-T filter that is very robust to motion vector errors can be used to correct motion compensation artifacts. The combination between two methods is controlled by the motion compensation reliability that is measured by analyzing the estimated motion vectors and the results of MC. The motion compensation reliability contains information about motion compensation artifacts of MC results and determines the combination weight according to this information. Therefore, the combination rule of the proposed method is more accurate than those of the conventional methods and it enables the proposed method to provide high quality video sequences without producing any visible artifacts. Experimental results with various test sequences show that the proposed algorithm outperforms conventional algorithms in terms of both visual and numerical criteria.

An Enhanced Separable Adaptive Interpolation Filter for High-Definition Video Compression (고해상도 비디오 압축을 위한 향상된 분리 적응형 보간 필터)

  • Yoon, Yeo-Jin;Jung, Seung-Won;Choi, Hae-Chul;Choi, Jin-Soo;Ko, Sung-Jea
    • Proceedings of the Korean Society of Broadcast Engineers Conference
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    • 2009.11a
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    • pp.53-56
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    • 2009
  • 최근 HD 방송의 실현과 함께 HDTV가 빠르게 상용화되면서 고화질 비디오를 더 효율적으로 압축하기 위한 기술 개발이 활발하게 진행되고 있다. 최신 표준 비디오 압축 방식인 H.264/AVC에서는 고정 6탭 필터를 사용하여 참조 영상을 보간하고 움직임 예측을 수행하는데, 이의 압축 효율을 향상시키기 위하여 고정 필터를 개선한 비분리 적응형 보간 필터가 개발되었다. 하지만 비분리 적응형 보간 필터는 압축률뿐만 아니라 계산량도 증가하는 단점이 있기 때문에 2차원 필터를 1차원 필터의 연결로 모델링 한 분리 적응형 보간 필터가 개발되었고, 그 결과 압축률은 비슷하게 유지하면서 계산량을 훨씬 줄일 수 있게 되었다. 분리 적응형 보간 필터는 1차원 필터 모델링을 할 때, 수평방향의 필터링 수행 후 수직방향 필터링을 하기 때문에 이를 통해 만들어진 보간 영상은 원 영상의 수평방향에 대한 특성을 더 많이 반영하게 된다. 따라서 수직방향으로 더 높은 주파수 특성을 갖는 영상의 경우에는 효율이 떨어지게 된다. 이를 고려하여 본 논문에서는 영상의 수직방향 주파수 특성을 더 많이 반영할 수 있는 보간 필터를 추가함으로써 영상의 주파수 특성에 따라 보간 필터를 적응적으로 선택하는 향상된 분리 적응형 보간 필터를 제안한다. 제안한 알고리즘을 이용할 경우 기존의 분리 적응형 보간 필터에 비해 움직임 예측 및 보상이 더 정확하게 이뤄질 수 있으며, 부호화 효율이 향상됨을 확인할 수 있다.

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