Motion estimation (ME) is one of the most time consuming parts in video coding standard. As fast integer-pixel ME algorithm becoming more and more powerful, it is important to develop fast sub-pixel ME algorithm since the computational complexity of sub-pixel ME compared to integer-pixel ME has become relatively signicant. In this paper, a novel fast sub-pixel ME algorithm is proposed. This algorithm first approximates the error surface of the sub-pixel position by a second order function and predicts the minimum point by minimizing the function at half-pixel accuracy. Then another second order approximation within a smaller area which is determined by the previous step is modeled to predict the best sub-pixel position. Experimental results...
We propose a fast subpixel motion estimation algorithm for the H.264 advanced video coding (AVC) sta...
In this paper, we propose a novel massively parallel motion estimation for HEVC using an efficient y...
International audience—In this paper, a fast configuration for Motion Estimation (ME) is described i...
Motion estimation (ME) is one of the key elements in video coding standard which eliminates the temp...
This paper presents a fast integer-pixel motion estimation (ME) algorithm for High Efficiency Video ...
Fractional-pixel motion compensation is still one of the most time-consuming parts in the upcoming H...
Motion Estimation is an essential process in many video coding standards like MPEG-2, H.264/AVC and ...
Abstract In this paper, We have focused on the development and implementation of novel low computati...
ABSTRACT In modern video coding standards, for example H.264, fractional-pixel motion estimation (ME...
In this paper, a low complexity High Efficiency Video Coding (HEVC) sub-pixel motion estimation (SPM...
5th International Conference on Visual Information Engineering, VIE 2008, Xi'an, 29 July-1 August 20...
In this letter, a new fast motion estimation (FME) algorithm capable of producing sub-sample motion ...
We propose a robust and fast quarter-pixel motion estimation algorithm. This algorithm is an advance...
International audience—In this paper, a fast configuration for Motion Estimation (ME) is described i...
International audience—In this paper, a fast configuration for Motion Estimation (ME) is described i...
We propose a fast subpixel motion estimation algorithm for the H.264 advanced video coding (AVC) sta...
In this paper, we propose a novel massively parallel motion estimation for HEVC using an efficient y...
International audience—In this paper, a fast configuration for Motion Estimation (ME) is described i...
Motion estimation (ME) is one of the key elements in video coding standard which eliminates the temp...
This paper presents a fast integer-pixel motion estimation (ME) algorithm for High Efficiency Video ...
Fractional-pixel motion compensation is still one of the most time-consuming parts in the upcoming H...
Motion Estimation is an essential process in many video coding standards like MPEG-2, H.264/AVC and ...
Abstract In this paper, We have focused on the development and implementation of novel low computati...
ABSTRACT In modern video coding standards, for example H.264, fractional-pixel motion estimation (ME...
In this paper, a low complexity High Efficiency Video Coding (HEVC) sub-pixel motion estimation (SPM...
5th International Conference on Visual Information Engineering, VIE 2008, Xi'an, 29 July-1 August 20...
In this letter, a new fast motion estimation (FME) algorithm capable of producing sub-sample motion ...
We propose a robust and fast quarter-pixel motion estimation algorithm. This algorithm is an advance...
International audience—In this paper, a fast configuration for Motion Estimation (ME) is described i...
International audience—In this paper, a fast configuration for Motion Estimation (ME) is described i...
We propose a fast subpixel motion estimation algorithm for the H.264 advanced video coding (AVC) sta...
In this paper, we propose a novel massively parallel motion estimation for HEVC using an efficient y...
International audience—In this paper, a fast configuration for Motion Estimation (ME) is described i...