18679527. Decoder-side Inter Prediction based on No Reference Visual Quality simplified abstract (Ofinno, LLC)
Contents
- 1 Decoder-side Inter Prediction based on No Reference Visual Quality
- 1.1 Organization Name
- 1.2 Inventor(s)
- 1.3 Decoder-side Inter Prediction based on No Reference Visual Quality - A simplified explanation of the abstract
- 1.4 Simplified Explanation
- 1.5 Key Features and Innovation
- 1.6 Potential Applications
- 1.7 Problems Solved
- 1.8 Benefits
- 1.9 Commercial Applications
- 1.10 Prior Art
- 1.11 Frequently Updated Research
- 1.12 Questions about Decoder-side Inter Prediction
- 1.13 Original Abstract Submitted
Decoder-side Inter Prediction based on No Reference Visual Quality
Organization Name
Inventor(s)
Tae Meon Bae of McLean VA (US)
Esmael Hejazi Dinan of McLean VA (US)
Kalyan Goswami of Reston VA (US)
Decoder-side Inter Prediction based on No Reference Visual Quality - A simplified explanation of the abstract
This abstract first appeared for US patent application 18679527 titled 'Decoder-side Inter Prediction based on No Reference Visual Quality
Simplified Explanation
The patent application describes a decoder that enables decoder-side inter prediction and reconstructs blocks based on motion information and residual blocks without using the current block as a reference.
- Decoder decodes an indication of decoder-side inter prediction and a reconstructed residual block.
- Generates reconstructed blocks based on motion information and residual blocks.
- Determines visual quality of reconstructed blocks without using the current block as a reference.
- Determines motion information for predicting the current block based on visual qualities.
- Reconstructs the current block based on the determined motion information.
Key Features and Innovation
- Decoder enables decoder-side inter prediction.
- Reconstruction of blocks based on motion information and residual blocks.
- Visual quality assessment of reconstructed blocks.
- Motion information determination for predicting the current block.
- Reconstruction of the current block based on determined motion information.
Potential Applications
This technology can be applied in video coding and decoding systems, multimedia streaming, and image processing applications.
Problems Solved
The technology addresses the need for efficient block reconstruction without using the current block as a reference, improving video quality and compression efficiency.
Benefits
- Improved video quality.
- Enhanced compression efficiency.
- Reduced computational complexity.
Commercial Applications
- Video streaming services.
- Video surveillance systems.
- Multimedia content delivery platforms.
Prior Art
Further research can be conducted on existing video coding and decoding techniques, motion estimation algorithms, and block-based video compression methods.
Frequently Updated Research
Stay updated on advancements in video coding standards, motion estimation algorithms, and image processing techniques related to block-based video compression.
Questions about Decoder-side Inter Prediction
How does decoder-side inter prediction improve video quality?
Decoder-side inter prediction enhances video quality by reconstructing blocks based on motion information and residual blocks without using the current block as a reference. This allows for more accurate prediction and better compression efficiency.
What are the potential applications of decoder-side inter prediction technology?
Decoder-side inter prediction technology can be applied in video coding and decoding systems, multimedia streaming services, and image processing applications to improve video quality and compression efficiency.
Original Abstract Submitted
A decoder decodes, from a bitstream for a current block, an indication of whether decoder-side inter prediction is enabled, and a reconstructed residual block. Based on the decoder-side inter prediction being enabled by the indication and for each respective motion information of a plurality of motion information, the decoder generates a reconstructed block based on: a prediction block generated using the respective motion information, and the reconstructed residual block. For each reconstructed block, the decoder determines a visual quality of the reconstructed block without using the current block as a reference. Based on the visual qualities of the reconstructed blocks, motion information for predicting the current block is determining from the plurality of motion information. The decoder reconstructs the current block based on the determined motion information.