The sub-pixel motion estimation (SME), together with the interpolation of reference frames, is a computationally extensive part of the H.264 encoder that increases the memory requirement 16-times for each reference frame. Due to the huge computational complexity and memory requirement of the H.264 SME, its hardware architecture design is an important issue especially in high resolution or low power applications. To solve the above difficulties, we propose several optimization techniques in both algorithm and architecture levels. In the algorithm level, we propose a parabolic based algorithm for SME with quarter-pixel accuracy which reduces the computational budget by 94.35% and the memory access requirement by 98.5% in comparison to the sta...
Abstract Fractional Motion Estimation (FME) in high-definition H.264 presents a significant design c...
The paper presents a hardware-efficient fast algorithm and its architecture for large search range m...
In this paper, we propose an algorithm for selective application of sub-pixel Motion Estimation and ...
The sub-pixel motion estimation (SME), together with the interpolation of reference frames, is a com...
H.264/AVC employs variable block-size motion estimation (VBSME) with quarter-pixel accuracy, which s...
This paper reviews recent state-of-the-art H. 264 sub-pixel motion estimation (SME) algorithms and a...
Variable block-size motion estimation (VBSME) process occupies a major part of computation of an H.2...
Abstract The paper presents a hardware friendly fast algorithm and its architecture for motion estim...
We propose a fast subpixel motion estimation algorithm for the H.264 advanced video coding (AVC) sta...
Compression is a necessity for the efficient storage and transmission of digital video as digital vi...
In this paper, we present an efficient hardware architecture for real-time implementation of quarter...
This paper presents a high-performance hardware architecture for the H.264/AVC Half-Pixel Motion Est...
Fast variable block-size motion estimation is a key issue for real-time applications of the H.264, w...
5th International Conference on Visual Information Engineering, VIE 2008, Xi'an, 29 July-1 August 20...
This paper presents a VLSI architecture for a low complexity motion estimation algorithm, referred t...
Abstract Fractional Motion Estimation (FME) in high-definition H.264 presents a significant design c...
The paper presents a hardware-efficient fast algorithm and its architecture for large search range m...
In this paper, we propose an algorithm for selective application of sub-pixel Motion Estimation and ...
The sub-pixel motion estimation (SME), together with the interpolation of reference frames, is a com...
H.264/AVC employs variable block-size motion estimation (VBSME) with quarter-pixel accuracy, which s...
This paper reviews recent state-of-the-art H. 264 sub-pixel motion estimation (SME) algorithms and a...
Variable block-size motion estimation (VBSME) process occupies a major part of computation of an H.2...
Abstract The paper presents a hardware friendly fast algorithm and its architecture for motion estim...
We propose a fast subpixel motion estimation algorithm for the H.264 advanced video coding (AVC) sta...
Compression is a necessity for the efficient storage and transmission of digital video as digital vi...
In this paper, we present an efficient hardware architecture for real-time implementation of quarter...
This paper presents a high-performance hardware architecture for the H.264/AVC Half-Pixel Motion Est...
Fast variable block-size motion estimation is a key issue for real-time applications of the H.264, w...
5th International Conference on Visual Information Engineering, VIE 2008, Xi'an, 29 July-1 August 20...
This paper presents a VLSI architecture for a low complexity motion estimation algorithm, referred t...
Abstract Fractional Motion Estimation (FME) in high-definition H.264 presents a significant design c...
The paper presents a hardware-efficient fast algorithm and its architecture for large search range m...
In this paper, we propose an algorithm for selective application of sub-pixel Motion Estimation and ...