A method subdivides binary words into low-order and high-order subwords to optimize entropic transcoding efficiency.
A video encoding apparatus calculates adjacent pixel variation to select optimal intra prediction modes for efficient compression.
A video coding method selects between implicit and explicit modes to notify transform block sizes for each macroblock.
A scalable video encoder uses full-resolution residual values to optimize base layer motion estimation and mode decision processes.
A slice-level encoding method references existing parameter sets to configure coding tools flexibly.
An adaptive de-blocking filter adjusts filtering ranges and region modes based on local activity to reduce blocking artifacts in video streams.
A loop filter applies variable incremental strength to reconstructed video blocks based on quality values, reducing blocking artifacts along boundaries.
Pre-positioned synchronization markers allow receivers to bypass delayed retransmissions and recover lost frames with minimal end-to-end delay.
A classification engine detects target objects in video blocks to adjust quantization levels dynamically.
Grouping macroblocks by activity assigns consistent quantization values, balancing bit rate against picture quality artifacts.
A multi-view encoding method computes disparity vectors using transmitted camera location parameters.
A video transcoder classifies macroblocks using perceptual processing to adjust quantization parameters.
Multi-instance encoding module segments video streams across processors to resolve the contradiction between productivity gains and rising system complexity.
A video decoder processes mixed HDR and SDR segments using dynamic electro-optical transfer functions for accurate luminance reconstruction.
Closed loop controller parses complexity data to determine optimal bit allocation for video channels.
Alternative full search eliminates useless modes before cost calculation to reduce computational complexity while maintaining compression performance.
Parallel speculative computation of filter results and application conditions eliminates conditional branching bottlenecks in VLIW video loop deblocking.
A receiver selects optimal streams from multiple description coded video to maintain constant quality.
Predicting motion vectors from neighbors creates a coherent field that improves error correction and compression efficiency.
A video interface feedback channel transmits preferred color gamut settings from a sink device to a source device.
A parallel video encoder uses original reference pictures for motion estimation to enable simultaneous processing across multiple hardware instances.
A video encoder selects modes using a Huber cost function to reduce distortion outliers.
A video encoder selects sub-pixel precision for motion vectors and signals the choice using context-adaptive binary arithmetic coding.
A decoder architecture separates common core operations into a hardware accelerator and standard-specific tasks into a programmable element.
Adaptive pixel offsetting reduces non-zero difference ranges between adjacent samples to improve coding efficiency in high-efficient video codecs.
A video coding apparatus composites reference images using detected motion vectors to generate a prediction block for encoding.
Context-based binary arithmetic coding uses shared probability models for image components to enhance encoding efficiency.