• Title/Summary/Keyword: Quantization

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DZDC Coefficient Distributions for P-Frames in H.264/AVC

  • Wu, Wei;Song, Bin
    • ETRI Journal
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    • v.33 no.5
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    • pp.814-817
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    • 2011
  • In this letter, the distributions of direct current (DC) coefficients for P-frames in H.264/AVC are analyzed, and the distortion model of the Gaussian source under the quantization of the dead-zone plus-uniform threshold quantization with uniform reconstruction quantizer is derived. Experimental results show that the DC coefficients of P-frames are best approximated by the Laplacian distribution and the Gaussian distribution at small quantization step sizes and at large quantization step sizes, respectively.

Adaptive Selection of Weighted Quantization Matrix for H.264 Intra Video Coding (H.264 인트라 부호화를 위한 적응적 가중치 양자화 행렬 선택방법)

  • Cho, Jae-Hyun;Cho, Suk-Hee;Jeong, Se-Yoon;Song, Byung-Cheol
    • Journal of Broadcast Engineering
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    • v.15 no.5
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    • pp.672-680
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    • 2010
  • This paper presents an adaptive quantization matrix selection scheme for H.264 video encoding. Conventional H.264 coding standard applies the same quantization matrix to the entire video sequence without considering local characteristics in each frame. In this paper, we propose block adaptive selection of quantization matrix according to edge directivity of each block. Firstly, edge directivity of each block is determined using intra prediction modes of its spatially adjacent blocks. If the block is decided as a directional block, new weighted quantization matrix is applied to the block. Otherwise, conventional quantization matrix is used for quantization of the non-directional block. Since the proposed weighted quantization is designed based on statistical distribution of transform coefficients in accordance with intra prediction modes, we can achieve high coding efficiency. Experimental results show that the proposed scheme can improve coding efficiency by about 2% in terms of BD bit-rate.

Design of a Frequency Offset Corrector and Analysis of Noises due to Quantization Angle in OFDM LAN Systems (OFDM 시스템에서 주파수편차 교정기의 설계와 각도 양자화에 의한 잡음의 분석)

  • 황진권
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.29 no.7A
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    • pp.794-806
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    • 2004
  • This paper deals with correction of frequency offset and analysis of quantization angle noise in the IEEE 802.1la OFDM system. The rotation phase per symbol due to the carrier frequency offset is estimated from auto-correlation of the short Preambles, which are over-sampled for the reduction of noise in OFDM signals. The pilot signals are introduced to estimate the rotation phase per OFDM symbol due to estimation error of the carrier frequency offset and the sampling frequency onset. During the estimation and correction of the frequency onsets, a CORDIC processor and a look-up table are used for the conversion between a rotation phase and its complex number. Being calculated by a limited number of bits in the CORDIC processor and the look-up table, the rotation phase and its complex number have quantization angle errors. The quantization errors are analyzed as SNR (signal to noise ratio) due to the quantization bit numbers. The minimum bit number is suggested to meet the specification of IEEE 802.1la properly. Finally, the quantization errors are evaluated through simulations on number of quantization bits and SNR of received signals.

Method of Harmonic Magnitude Quantization for Harmonic Coder Using the Straight Line and DCT (Discrete Cosine Transform) (하모닉 코더를 위한 직선과 이산코사인변환 (DCT)을 이용한 하모닉 크기값 (Magnitude) 양자화 기법)

  • Choi, Ji-Wook;Jeong, Gyu-Hyeok;Lee, In-Sung
    • The Journal of the Acoustical Society of Korea
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    • v.27 no.4
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    • pp.200-206
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    • 2008
  • This paper presents a method of quantization to extract quantization parameters using the straight-line and DCT (Discrete Cosine Transform) for two splited frequency bands. As the number of harmonic is variable frame to frame, harmonics in low frequency band is oversampled to fix the dimension and straight-lines present a spectral envelope, then the discontinuous points of straight-lines in low frequency is sent to quantizer. Thus, extraction of quantization parameters using the straight-line provides a fixed dimension. Harmonics in high frequency use variable DCT to obtain quantization parameters and this paper proposes a method of quantization combining the straight-line with DCT. The measurement (If proposed method of quantization uses spectral distortion (SD) for spectral magnitudes. As a result, The proposed method of quantization improved 0.3dB in term of SD better than HVXC.

JPEG Image Quantization Method with Variable Thresholds (가변 임계값을 갖는 JPEG 영상의 양자화 방법)

  • O, Ha-Ryeong;Yun, Seok-Hyeon;Seong, Yeong-Rak
    • The Transactions of the Korea Information Processing Society
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    • v.6 no.11
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    • pp.3150-3156
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    • 1999
  • In this paper, VTQM(Variable Threshold Quantization Method) is proposed, which enhances PSNR by composing the advantages of round-off and truncation quantization methods. From vast experiments, PSNR's of JPEG images with the method are compared with that of standard JPEG methods. At the boundary which affects the compression ratio, VTQM quantizes with a new threshold to reduce the length of compressed data; otherwise, VTQM employs the round-off quantization method to preserve the original image information. As a result, VTQM reduces bit rate while preserving the image quanity. The experimental results show that VTQM enhances PSNR by 0.2-0.3dB., 0.4-0.5dB, with the same bit rate than those of the traditional truncation and round-off quantization methods, respectively.

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Adaptive Blind Watermarking Algorithm Using Biased-Shift of Quantization Coefficient

  • Seo Young Ho;Cho Hyun Jun;Kim Dong Wook
    • Proceedings of the IEEK Conference
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    • 2004.08c
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    • pp.832-835
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    • 2004
  • In this paper, we proposed a blind watermarking algorithm to use characteristics of a scalar quantizer which is similar with the recommended in the JPEG2000 and JPEG. This algorithm shifts a quantization index according to the value of each watermark bit to prevent losing the watermark information during the compression by quantization. Therefore, the watermark is embedded during the process of quantization, not an additional process for watermarking, and adaptively applied as an assigned quantizer according to application area. In the embedding process, a LFSR(Linear feedback shift register) is used to hide the watermarking positions. Therefore the embedded watermark can be extracted by only the owner who knows the initial value of LFSR without the original image. The experimental results showed that the proposed algorithm satisfies the robustness and imperceptibility corresponding to the major requirement of watermarking.

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An adaptive quantization martrix generation in moving image encoder (동영상 부호화기에서의 적응적 양자화 매트릭스 생성)

  • 김정우;이근영
    • Journal of the Korean Institute of Telematics and Electronics S
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    • v.35S no.2
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    • pp.106-113
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    • 1998
  • Quantizer with bit rate control performs lossy compressionin moving image coding. Efficient quantizer can improve subjective quality of reconstructed image at the same bit rate because most of errors are occured at this stage. Although quantization matix of current compression stantards reflects human visual system, the performance of their quantization matrixes is not always optimal because they are not considering each image characteristics. We proposed a new adaptive optimal quantization matrix obtained by considering complexity of each image subblocks. It resulted in improvments of image quality about 0.05-0.82 dB and good subject quality at edge regions when we simulated the quantization method in various coding statndards.

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Performance Improvement Using Mean Compensation of Quantization Noise in Low Bit-rate Video Encoder (저 전송률 통영상에서 양자화 잡음의 평균값 보상을 사용한 부호화기의 성능 개선)

  • 신정환;백성학;김재호
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.26 no.12A
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    • pp.2085-2091
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    • 2001
  • In lossy compression method, the transformed coefficients are quantized. This results in the quantization noise. The video image quality and bit rate is closely related with the quantization step. In this paper, we proposed a new quantization function for the improved performance. The DC value of each macroblock is compensated depending on the magnitude of DC quantization error. It is implemented very low bit-rate video coding, i.e., H.26L. The experimental result is useful when the object motion is not severe.

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Encoding of Speech Spectral Parameters Using Adaptive Vector-Scalar Quantization Methods for Mobile Communication Systems

  • Lee, In-Sung;Kim, Jong-Hark
    • The Journal of the Acoustical Society of Korea
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    • v.17 no.4E
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    • pp.35-40
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    • 1998
  • In this paper, an efficient quantization method of line spectrum pairs(LSP) with cascaded structure of vector quantizer and scalar quantizer is proposed. First, input LSP parameters is vector-quantized using a codebook a with a moderate number of entries. In the second stage of quantization, the components of residual vector are individually quantized by the scalar quantizer. The utilization of ordering property of LSP parameters and the inclusion of interframe prediction improve the quantizer performance and remove the stability check routine after quantization procedure. The new vector-scalar hybrid quantizer using 26 bits/frame shows a transparent quality of speech that an average spectral distortion is 1 dB and the frame proportion with above 2 dB spectral distortion is less than 2%. The performances of proposed quantization method is evaluated in the transmission errors.

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The wavelet Image Coding Using Band Adaptive Quantization and the Significant Cluster Extraction (대역 적응 양자화와 중요 클러스터 추출을 이용한 웨이브릿 영상 부호화)

  • Ryu Kwon-yeol
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.9 no.6
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    • pp.1234-1240
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    • 2005
  • In this paper, I propose the wavelet image coding method using band adaptive quantization and the significant cluster extraction. The proposed method can reduce to unnecessary additional seed data which create on conventional MRWD coding, because it eliminate cluster which smaller than structuring element by using morphology. And it make fast coding possible, because it is reduced to computational complexity by using band adaptive quantization. Consequently, the proposed method reduces computational complexity with $20\%{\~}33.3\%$ according to bit rate in quantization process.