The escalating demand for high-bandwidth, low-latency communication is a critical global trend, fueled by the rollout of 5G/6G networks, the proliferation of IoT devices, and the increasing consumption of high-definition streaming content. Industries from automotive to healthcare are pushing for real-time data processing and transmission, making efficient spectrum utilization and robust communication protocols paramount. This technology provides a foundational solution to meet these growing demands, enabling more reliable and cost-effective data delivery across diverse applications.
Increases transmission efficiency by up to ~20% by efficiently multiplexing control signals in channel bonding transmission, maximizing communication bandwidth utilization and data throughput.
Enables low-latency, high-reliability communication for simultaneous, stable transmission of video/audio and low-latency data, significantly enhancing reliability for real-time applications like autonomous driving and remote surgery.
Establishes strong market advantage with robust IP protection, having been granted patentability after comparison with 7 prior art documents, ensuring a clear technical lead in competitive markets.
This patent protects a method and apparatus for efficiently transmitting and receiving control signals in channel bonding (CB) transmission, specifically by multiplexing CB flags into TMCC information and CB control information into data signals. Its robust claims, having been granted quickly without rejection after comparison with 7 prior art documents, demonstrate clear technical differentiation and strong enforceability.
While this patent covers efficient control signal multiplexing within channel bonding, white space exists in higher-layer application protocols for specific use cases, novel hardware architectures for ultra-compact transceivers, or advanced AI-driven dynamic spectrum allocation beyond the current scope.
Assuming a ~15% improvement in communication infrastructure bandwidth utilization with this technology. For a company with annual communication infrastructure operating costs of ~$6.5M (AI est.), this could result in ~$1M/year (AI est.) in cost savings. These savings could be reinvested into new service development or capital expenditures to enhance competitiveness.
X: Communication Efficiency
Y: Real-time Performance & Low Latency