Bias current tracks active digital channel power in CATV amplifiers, cutting energy use while maintaining acceptable BER and MER.
Adaptive SISO, MISO, and MIMO decoding improves broadcast transmission efficiency and robustness while preserving compatibility with single-antenna receivers.
A layered PLP frame with preamble signaling enables MIMO broadcast transmission while preserving compatibility and robust indoor or mobile reception.
Multiple physical layer zones let receivers choose suitable data streams, improving broadcast robustness and capacity without reverse-link adaptation.
Mixed error correction and uncoded transport tunneling let ATSC broadcasts support robust mobile reception while preserving legacy compatibility.
Mobile data is inserted into normal data packets and paired with known data to improve broadcast reception without sacrificing stream efficiency.
Mobile data is inserted into normal-data packet areas to raise broadcast stream efficiency while improving error resilience and reception.
Mobile data is placed in part of the normal data area to improve broadcast efficiency while known data insertion strengthens reception.
Segmenting a broadcast frame into physical layer zones lets receivers choose robust or efficient data streams without reverse-link feedback.
Time-division multiplexing of component data and signaling helps reception devices select and switch components with less complexity.
Comparing RDS auxiliary data across transmitters stops duplicate same-frequency broadcasts and improves receiver data reliability.
Time-division multiplexing carries component data and signaling information together, helping hybrid receivers select and present components more easily.
A component structure table and three-layer selection model simplify adaptive media assembly for hybrid broadcast and communication systems.
Encoding sub-audible codes within analog signals via echo and power modulation eliminates expensive receiver requirements while maintaining signal fidelity.
A Broadcast Market Exchange platform manages dynamic spectrum allocation across hybrid broadcast networks.
Monitoring viewing trends triggers dynamic switching from unicast to multicast links, reducing network load while maintaining high data transmission efficiency.
A network optimization system dynamically switches streaming content between point-to-point and broadcast transmission modes based on real-time usage analysis.
A distribution system uses a transition broadcast channel to simultaneously transmit next-generation and legacy services.
Dynamic spectrum allocation offloads traffic from congested licensed bands, improving network efficiency and user experience.
Dynamic encoding adjusts bit rate based on available bandwidth while honoring user-selected spatial or timbral quality preferences.
Segmenting MIMO processing with OFDM intermediaries reduces device complexity while enhancing data transmission efficiency.
Layered division multiplexing with dummy values resolves TDM flexibility limits, enabling reliable next-generation broadcasting reception.
A data processor divides input streams into multiple channels using null packets to maintain predetermined density.
Grouping mobile stations by zones and multicasting zone information reduces MAP overhead while unicasting specific resource allocations.
Encoding units define null intervals to blank transmitters, reducing power consumption while maintaining data transmission reliability.
A scheduling algorithm divides broadcast data streams into single-stream frames to minimize terminal power usage and channel switching delays.
A session controller enables seamless video playback by transferring sessions from DVB-H to cellular data when coverage drops.
Embedding watermark sequences in OFDM signals enables terminals to identify uplink-capable ground stations.
Segmenting broadcast messages by type enables direct sending of normal broadcasts to bypass ordered queue delays.
A broadcast signal processing apparatus segments input streams into Physical Layer Pipes for independent modulation.
A broadcast signal transmitting apparatus generates media components with timestamp information for flexible network delivery.
A file delivery framework uses broadcast schedule messages to advertise upcoming data transfers for mobile devices.
A network performance assessor monitors capacity utilization to dynamically adjust video formats and communication paths.