Extracting link information from broadcast content reduces data transmission requirements while improving interoperability across diverse receiver platforms.
A broadcast receiver processes non-real-time content using File Delivery over Unidirectional Transport sessions and specific signaling information.
A linking and browsing system dynamically acquires additional content related to a current television program.
A hybrid broadcast transmission apparatus routes service components through Layered Coding Transport channels for efficient data delivery.
Physical layer pipes segment broadcast data to balance high-definition content capacity with mobile reception reliability.
Application control information embeds location and reference clock data to synchronize hybrid broadcast and communication content streams.
A reception device utilizes service worker scope tokens to efficiently locate metadata associated with scheduled data acquisition tasks.
ROUTE protocol segments application files to resolve data transmission efficiency bottlenecks in hybrid broadcast systems.
A mode switching mechanism enables host and client devices to broadcast and receive global coordinate information.
A wireless audio receiver uses a digitally modulated pilot tone to transmit system status data to a remote central control unit.
A multi-channel signal encoding method adapts quantization precision based on detected channel level difference states.
Segmenting signaling information into broadcast wave and communication channels reduces data volume while maintaining hybrid service functionality.
A synchronization control apparatus converts International Atomic Time to STC counter values using a processor or dedicated arithmetic circuit.