The accelerating rollout of 5G/6G networks, coupled with the proliferation of data-intensive applications like 4K/8K streaming, VR/AR, and industrial IoT, is creating unprecedented pressure on existing communication infrastructures. Enterprises face increasing competitive demands for ultra-reliable, low-latency data delivery. This technology offers a strategic advantage by enabling efficient utilization of diverse transmission paths, addressing bandwidth constraints and ensuring superior quality of experience for critical real-time services.
Expands transmission capacity by up to 2x by integrating multiple broadcast paths for high-definition content and multi-channel services.
Streamlines system integration with IP compatibility, potentially reducing system build time by 20% through seamless integration with existing IP networks.
Achieves high-quality delivery by reducing jitter by 10x, effectively mitigating reordering and signal disruptions through unique identifiers and output interval adjustments.
The patent's novelty and inventiveness were objectively recognized by overcoming four prior art references and an office action during examination, indicating a robust and stable patent. It protects core algorithms for segmented data transmission and jitter reduction across multiple broadcast and IP-based communication paths, offering a strong foundation for business development with low invalidation risk.
This patent protects core algorithms for multi-path data transmission and jitter reduction. Licensees could develop complementary IP in higher-layer protocols or specific hardware implementations.
Implementing this technology could improve transmission efficiency, increasing service offerings within the same bandwidth (creating revenue opportunities) and reducing retransmission processing and fault response costs due to lower error rates. For instance, an estimated ~$350K/year in retransmission processing costs and ~$1.5M/year in jitter-related customer support costs, totaling ~$1.85M/year, could be reduced by up to ~$1.5M/year (AI est.) with this technology.
X: Data Transmission Stability & Quality
Y: Transmission Capacity Efficiency