MUMBAI, India, July 7 -- Intellectual Property India has published a patent application (202641079259 A) filed by Sr University on June 26, 2026, for A Quantum-Inspired Trust-Adaptive Multi-Leader Byzantine Consensus Framework For Hierarchical Edge-Iot Blockchain Networks.

Inventors include Jasti Padmavathi; and T. Sampath Kumar.

The application for the patent was published on July 03, 2026, under issue no. 27/2026.

Abstract: ABSTRACT: Title: A QUANTUM-INSPIRED TRUST-ADAPTIVE MULTI-LEADER BYZANTINE CONSENSUS FRAMEWORK FOR HIERARCHICAL EDGE-IOT BLOCKCHAIN NETWORKS The present invention relates to a quantum- inspired trust-adaptive multi-leader Byzantine consensus framework for hierarchical Edge-IoT blockchain networks. The framework comprises distributed blockchain nodes organized into hierarchical clusters, a trust-state modeling engine, a probabilistic multi-leader coordination module, a trust-wave synchronization mechanism, a transformer-based Byzantine prediction engine, and an adaptive recovery controller. Each node maintains a dynamic trust-state representation generated using trust reliability, synchronization stability, residual energy, and Byzantine risk parameters. The probabilistic multi-leader mechanism reduces dependence on a single leader and enhances consensus scalability. The trust-wave synchronization module maintains consistency among distributed clusters, while the transformer-based prediction engine identifies malicious behavior before consensus failures occur. The adaptive recovery controller automatically reconfigures consensus operations to maintain network stability. The invention significantly improves throughput, reduces latency, lowers communication overhead, enhances Byzantine fault tolerance, and provides secure, scalable, and intelligent blockchain coordination for dynamic Edge-IoT computing environments.

Disclaimer: Curated by HT Syndication.