MUMBAI, India, July 24 -- Intellectual Property India has published a patent application (202641084477 A) filed by Dr M Shiva Rama Krishna; S Ramana Reddy; Dr. M. Mamatha; Girigula Durga Bhavani; V. Babu Ravipati; Bondala Anil Kumar; Dr Rajkumar Kalimuthu; Dr. Rupinder Saini; and Dr. G. Siva Krishna on July 09, 2026, for Secure And Scalable Cybersecurity Architecture Through Quantum Computing And Multi-Agent Blockchain Systems.

Inventors include Dr M Shiva Rama Krishna; S Ramana Reddy; Dr. M. Mamatha; Girigula Durga Bhavani; V. Babu Ravipati; Bondala Anil Kumar; Dr Rajkumar Kalimuthu; Dr. Rupinder Saini; and Dr. G. Siva Krishna.

The application for the patent was published on July 17, 2026, under issue no. 29/2026.

Abstract: Abstract: A secure and scalable cybersecurity architecture integrating quantum computing, multi-agent security intelligence, and blockchain-based decentralized trust management is disclosed. The system comprises a plurality of intelligent security agents deployed across distributed digital assets, including cloud servers, edge nodes, Internet of Things devices, endpoints, databases, and enterprise systems. Each security agent is configured to collect security data, extract threat-related features, compute a local risk score, communicate with other agents, and submit validated event information to a blockchain trust layer. The blockchain layer records cybersecurity events, agent identities, access decisions, threat alerts, policy updates, and incident response actions in a tamper-resistant ledger using smart contracts and consensus-based validation. A quantum computing security module provides quantum-generated cryptographic keys, quantum-assisted risk analysis, quantum-inspired threat optimization, and optimized incident response selection. The architecture generates a global threat score by aggregating local risk scores from multiple trusted agents and automatically initiates response actions when the global threat score exceeds a predefined threshold. The disclosed invention improves cybersecurity resilience, scalability, auditability, secure communication, autonomous threat detection, and quantum-ready protection for distributed computing environments.

Disclaimer: Curated by HT Syndication.