In the high efficiency video coding (HEVC) encoder, motion estimation (ME) takes up more than 50% encoding time. To reduce the complexity of the ME module in HEVC, this paper proposes a flexible coding tree unit (CTU)-level parallel ME method through CPU and GPU pipeline collaboration. Firstly a highly scalable CTU-level parallel motion search scheme on GPU is provided, in which, the parallel CTU group can be configured to be any size to adapt to the variable sequence resolution and hardware configurations. Then, the motion search range can be adaptively adjusted based on the motion intensity. Therefore, the unnecessary GPU time wasting can be further avoided for slow-moving scenes, while high performance kept for fast-moving scenes. Moreov...
The High Efficiency Video Coding (HEVC) standard provides an outstanding compression performance and...
This work presents a hardware-aware search algorithm for HEVC motion estimation. Implications of sev...
International audience—In this paper, a fast configuration for Motion Estimation (ME) is described i...
This paper provides a multiple-layer parallel motion estimation (ME) scheme implemented on GPU for H...
We propose a highly parallel and scalable motion estimation algorithm, named multilevel resolution m...
This paper presents a high quality H.265/HEVC motion estimation implementation with the cooperation ...
The new High Efficiency Video Coding (HEVC) standard will most likely be used in many applications i...
High Efficiency Video Coding (HEVC) doubles the coding efficiency of the prior Advanced Video Coding...
Parallel processors such as Graphics processing units (GPUs) have emerged as co-processing units for...
Parallel processors such as Graphics processing units (GPUs) have emerged as co-processing units for...
Multiview video coding (MVC) is an extension of H.264/AVC standard. Its purpose is to further increa...
The encoding process in the HEVC standard is several times more complex than the previous standards....
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...
International audience—In this paper, a fast configuration for Motion Estimation (ME) is described i...
The High Efficiency Video Coding (HEVC) standard provides an outstanding compression performance and...
This work presents a hardware-aware search algorithm for HEVC motion estimation. Implications of sev...
International audience—In this paper, a fast configuration for Motion Estimation (ME) is described i...
This paper provides a multiple-layer parallel motion estimation (ME) scheme implemented on GPU for H...
We propose a highly parallel and scalable motion estimation algorithm, named multilevel resolution m...
This paper presents a high quality H.265/HEVC motion estimation implementation with the cooperation ...
The new High Efficiency Video Coding (HEVC) standard will most likely be used in many applications i...
High Efficiency Video Coding (HEVC) doubles the coding efficiency of the prior Advanced Video Coding...
Parallel processors such as Graphics processing units (GPUs) have emerged as co-processing units for...
Parallel processors such as Graphics processing units (GPUs) have emerged as co-processing units for...
Multiview video coding (MVC) is an extension of H.264/AVC standard. Its purpose is to further increa...
The encoding process in the HEVC standard is several times more complex than the previous standards....
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...
International audience—In this paper, a fast configuration for Motion Estimation (ME) is described i...
The High Efficiency Video Coding (HEVC) standard provides an outstanding compression performance and...
This work presents a hardware-aware search algorithm for HEVC motion estimation. Implications of sev...
International audience—In this paper, a fast configuration for Motion Estimation (ME) is described i...