• Title/Summary/Keyword: Mode Complexity

Search Result 404, Processing Time 0.028 seconds

Fast Ultra-mode Selection Algorithm for H.264/AVC Video Coding with Low Complexity (저 복잡도의 H.264/AVC를 위한 고속 인트라 모드 선택 기법)

  • Kim, Jong-Ho;Jeong, Je-Chang
    • The Journal of Korean Institute of Communications and Information Sciences
    • /
    • v.30 no.11C
    • /
    • pp.1098-1107
    • /
    • 2005
  • The emerging H.264/AVC video coding standard improves coding performance significantly by adopting many advanced techniques. This is achieved at the expense of great increasing encoder complexity. Specifically the intra prediction using RDO examines all possible combinations of coding modes, which depend on spatial directional correlation with adjacent blocks. For 4${\times}$4 luma blocks, there are 9 modes, and for 16${\times}$16 luma and 8${\times}$8 chroma blocks, there are 4 modes, respectively. Therefore the number of mode combinations for each macroblock is 592. This paper presents a method to reduce the RDO complexity using simple directional masks and neighboring modes. According to the proposed method, we reduce the number of mode combinations to 132 at the most. Experimental results show the proposed method reduces the encoding time up to $70\%$ with negligible loss of PSNR and bitrate increase compared to the H.264/AVC exhaustive search.

HEVC Coding Unit Mode Based Motion Frame Analysis

  • Jia, Qiong;Dong, Tianyu;Jang, Euee S.
    • Proceedings of the Korean Society of Broadcast Engineers Conference
    • /
    • 2021.06a
    • /
    • pp.52-54
    • /
    • 2021
  • In this paper we propose a method predict whether a video frame contains motion according to the invoking situation of the coding unit mode in HEVC. The motion prediction of video frames is conducive for use in video compression and video data extraction. In the existing technology, motion prediction is usually performed by high complexity computer vision technology. However, we proposed to analyze the motion frame based on HEVC coding unit mode which does not need to use the static background frame. And the prediction accuracy rate of motion frame analysis by our method has exceeded 80%.

  • PDF

An Efficient Mode Decision Method for Fast Intra Encoding in the SVC Enhancement Layer (SVC 향상 계층의 빠른 인트라 부호화를 위한 효율적인 모드 결정 방법)

  • Cho, Mi-Sook;Kang, Jin-Mi;Chung, Ki-Dong
    • Journal of Korea Multimedia Society
    • /
    • v.14 no.7
    • /
    • pp.872-883
    • /
    • 2011
  • SVC is an emerging video coding standard as an extension of H.264/AVC. This standard uses inter prediction, intra prediction and a new inter-layer prediction to improve coding performance of enhancement layers. However, it has high computational complexity. In this paper, we propose an efficient intra prediction mode decision method in the spatial enhancement layer to reduce the computational complexity. The proposed method consists of two phases. In the first phase, Intra_BL mode is selected using the RD cost of Intra_BL in advance. We exploit the fact that the RD cost and prediction mode are similar to those of neighbor macroblocks. In the second phase, we predict the enhancement layer mode using correlation between intra mode of enhancement layer and that of the base layer. Experimental results show that the proposed method could save from 48.15% to 56.32% in encoding time while degradation in video quality is negligible.

A Fast Macroblock Mode Decision Method using PSNR Prediction for H.264/AVC (H.264/AVC에서 PSNR 예측을 이용한 고속 매크로블록 모드 결정 방법)

  • Park, Sung-Jae;Myung, Jin-Su;Sim, Dong-Gyu;Oh, Seoung-Jun
    • Journal of Broadcast Engineering
    • /
    • v.13 no.1
    • /
    • pp.137-151
    • /
    • 2008
  • H.264/AVC is showed high coding efficiency more than previous video coding standard by using new coding tools. Specially, Variable block-based motion estimation and Rate-Distortion Optimization are very important coding tools in H.264/AVC. These coding tools have high coding efficiency, however the encoder complexity greatly increase due to these coding tools. In this paper, we propose early SKIP mode decision and selective inter/intra mode decision to reduce the computational complexity. Simulation results show that the proposed method could reduce encoding time of the overall sequences by 30% on average than JM 10.2 without noticeable degradation of coding efficiency. Besides, the proposed method runs over twice as fast as the previous proposed Fast Coding Mode Selection method (FCMS)[5].

Low-Complexity and Low-Power MIMO Symbol Detector for Mobile Devices with Two TX/RX Antennas

  • Jang, Soohyun;Lee, Seongjoo;Jung, Yunho
    • JSTS:Journal of Semiconductor Technology and Science
    • /
    • v.15 no.2
    • /
    • pp.255-266
    • /
    • 2015
  • In this paper, a low-complexity and low-power soft output multiple input multiple output (MIMO) symbol detector is proposed for mobile devices with two transmit and two receive antennas. The proposed symbol detector can support both the spatial multiplexing mode and spatial diversity mode in single hardware and shows the optimal maximum likelihood (ML) performance. By applying a multi-stage pipeline structure and using a complex multiplier based on the polar-coordinate, the complexity of the proposed architecture is dramatically decreased. Also, by applying a clock-gating scheme to the internal modules for MIMO modes, the power consumption is also reduced. The proposed symbol detector was designed using a hardware description language (HDL) and implemented using a 65nm CMOS standard cell library. With the proposed architecture, the proposed MIMO detector takes up an area of approximately $0.31mm^2$ with 183K equivalent gates and achieves a 150Mbps throughput. Also, the power estimation results show that the proposed MIMO detector can reduce the power consumption by a maximum of 85% for the various test cases.

Reusable HEVC Design in 3D-HEVC

  • Heo, Young Su;Bang, Gun;Park, Gwang Hoon
    • ETRI Journal
    • /
    • v.38 no.5
    • /
    • pp.818-828
    • /
    • 2016
  • This paper proposes a reusable design for the merging process used in three-dimensional High Efficiency Video Coding (3D-HEVC), which can significantly reduce the implementation complexity by eliminating duplicated module redundancies. The majority of inter-prediction coding tools used in 3D-HEVC are utilized through a merge mode, whose extended merging process is based on built-in integration to completely wrap around the HEVC merging process. Consequently, the implementation complexity is unavoidably very high. To facilitate easy market implementation, the design of a legacy codec should be reused in an extended codec if possible. The proposed 3D-HEVC merging process is divided into the base merging process of reusing HEVC modules and reprocessing process of refining the existing processes that have been newly introduced or modified for 3D-HEVC. To create a reusable design, the causal and mutual dependencies between the newly added modules for 3D-HEVC and the reused HEVC modules are eliminated, and the ineffective methods are simplified. In an application of the proposed reusable design, the duplicated reimplementation of HEVC modules, which account for 50.7% of the 3D-HEVC merging process, can be eliminated while maintaining the same coding efficiency. The proposed method has been adopted as a normative coding tool in the 3D-HEVC international standard.

Block-Mode Lattice Reduction for Low-Complexity MIMO Detection

  • Choi, Kwon-Hue;Kim, Han-Nah;Kim, Soo-Young;Kim, Young-Il
    • ETRI Journal
    • /
    • v.34 no.1
    • /
    • pp.110-113
    • /
    • 2012
  • We propose a very-low-complexity lattice-reduction (LR) algorithm for multi-input multi-output detection in time-varying channels. The proposed scheme reduces the complexity by performing LR in a block-wise manner. The proposed scheme takes advantage of the temporal correlation of the channel matrices in a block and its impact on the lattice transformation matrices during the LR process. From this, the proposed scheme can skip a number of redundant LR processes for consecutive channel matrices and performs a single LR in a block. As the Doppler frequency decreases, the complexity reduction efficiency becomes more significant.

Fast Decision Method of Geometric Partitioning Mode and Block Partitioning Mode using Hough Transform in VVC (허프 변환을 이용한 VVC의 기하학 분할 모드 및 블록 분할 고속 결정 방법)

  • Lee, Minhun;Park, Juntaek;Bang, Gun;Lim, Woong;Sim, Donggyu;Oh, Seoung-Jun
    • Journal of Broadcast Engineering
    • /
    • v.25 no.5
    • /
    • pp.698-708
    • /
    • 2020
  • VVC (Versatile Video Coding), which has been developing as a next generation video coding standard. Compared to HEVC (High Efficiency Video Coding), VVC is improved by about 34% in RA (Random Access) configuration and about 30% in LDB (Low-Delay B) configuration by adopting various techniques such as recursive block partitioning structure and GPM (Geometric Partitioning Mode). But the encoding complexity is increased by about 10x and 7x, respectively. In this paper, we propose a fast decision method of GPM mode and block partitioning using directionality of block to reduce encoding complexity of VVC. The proposed method is to apply the Hough transform to the current block to identify the directionality of the block, thereby determining the GPM mode and the specific block partitioning method to be skipped in the rate-distortion cost search process. As a result, compared to VTM8.0, the proposed method reduces about 31.01% and 29.84% encoding complexity for RA and LDB configuration with 2.48% and 2.69% BD-rate loss, respectively.

A Skipping Method of Transformation and Quantization Process for Fast H.264 Encoder (H.264의 고속 부호화 처리를 위한 변환 및 양자화 과정 생략 기법)

  • Song, Won-Seon;Hong, Min-Cheol
    • The Journal of Korean Institute of Communications and Information Sciences
    • /
    • v.34 no.10C
    • /
    • pp.968-974
    • /
    • 2009
  • In this paper, we present a skipping method of transformation and quantization process using skip blocks estimation in fast H.264 video encoder. In order to reduce the complexity, we estimate skip mode blocks using integer discrete cosine transform and quantization and a skipping condition is derived by the analysis of those processes. The experimental result show that the proposed algorithm has effective estimations.

Mode Skip Method of Multiple Reference Frames in H.264 (H.264에서의 다중 참조 영상 간 모드 생략 기법)

  • Kwon, Jae-Hyun;Kang, Min-Jung;Ryu, Chul
    • Proceedings of the IEEK Conference
    • /
    • 2006.06a
    • /
    • pp.285-286
    • /
    • 2006
  • H.264 provide good coding efficiency compared with existing video coding standards as H.263, MPEG-4, etc. However, H.264 require the increase of encoder complexity. In this paper, fast mode decision algorithm by skipping variable block size motion estimation and spatial-predictive coding, which occupies most encoder complexity, is proposed. Experimental results show that the proposed approach can save encoding time to 55% compared with the H.264 standard.

  • PDF