18746839. METHOD FOR DECODER-SIDE MOTION VECTOR DERIVATION USING SPATIAL CORRELATION simplified abstract (Hyundai Motor Company)

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METHOD FOR DECODER-SIDE MOTION VECTOR DERIVATION USING SPATIAL CORRELATION

Organization Name

Hyundai Motor Company

Inventor(s)

Jin Heo of Seoul (KR)

Seung Wook Park of Seoul (KR)

METHOD FOR DECODER-SIDE MOTION VECTOR DERIVATION USING SPATIAL CORRELATION - A simplified explanation of the abstract

This abstract first appeared for US patent application 18746839 titled 'METHOD FOR DECODER-SIDE MOTION VECTOR DERIVATION USING SPATIAL CORRELATION

Simplified Explanation:

The patent application describes a method for deriving motion vectors on the decoder side using spatial correlation, reducing discontinuities at block boundaries in video coding.

  • Motion vectors derived by considering spatial correlation of the current block with surrounding blocks.
  • Minimization of discontinuities at block boundaries in video coding.
  • Overcoming disadvantages of per-block motion prediction.
  • Motion compensation performed based on spatial correlation rather than just the cost of current and prediction blocks.
  • Enhanced accuracy in motion vector derivation.

Key Features and Innovation:

  • Utilization of spatial correlation for decoder-side motion vector derivation.
  • Minimization of discontinuities at block boundaries in video coding.
  • Motion vectors derived by considering spatial correlation with surrounding blocks.
  • Improved accuracy in motion vector estimation.
  • Overcoming limitations of per-block motion prediction methods.

Potential Applications:

The technology can be applied in:

  • Video compression algorithms.
  • Video streaming services.
  • Virtual reality and augmented reality systems.
  • Video surveillance systems.
  • Broadcast television.

Problems Solved:

  • Discontinuities at block boundaries in video coding.
  • Inaccurate motion vector estimation.
  • Limitations of per-block motion prediction.
  • Reduced artifacts in compressed video.

Benefits:

  • Improved video quality.
  • Enhanced compression efficiency.
  • Reduced artifacts in motion-compensated video.
  • Better performance in video streaming applications.
  • Enhanced user experience in multimedia applications.

Commercial Applications:

Title: Enhanced Video Compression Technology for Improved Quality

This technology can be utilized in various commercial applications such as:

  • Video streaming platforms.
  • Video surveillance systems.
  • Broadcast television networks.
  • Virtual reality and augmented reality content creation.
  • Multimedia content delivery services.

Questions about the Technology:

1. How does spatial correlation improve motion vector derivation in video coding? 2. What are the specific advantages of minimizing discontinuities at block boundaries in video coding?


Original Abstract Submitted

A method for decoder-side motion vector derivation utilizes a spatial correlation. A video coding method and apparatus minimize discontinuities at block boundaries, in order to overcome disadvantages of motion prediction that performs motion compensation on a per block basis. The video coding method and the apparatus derive, during decoder-side motion vector derivation, motion vectors by taking into account spatial correlation of the current block with surrounding blocks rather than deriving motion vectors by considering only the cost of a current and prediction block.