MUMBAI, India, Aug. 24 -- Intellectual Property India has published a patent application (202641098957 A) filed by Dayananda Sagar University on August 16, 2026, for Hybrid Quantum-Generative Computing System For High-Fidelity Event- Horizon Simulation, Validation And Cryptographic Data Processing.
Inventors include Sriramkumar R; M. Lakshmanan; Jayavrinda V Vadakkeparambil; Joshuva Arockia Dhanraj; Mithaguru; and Pradeep Kumar K.
The application for the patent was published on August 21, 2026, under issue no. 34/2026.
Abstract: Title: Hybrid Quantum-Generative Computing System for High-Fidelity Event-Horizon Simulation, Validation and Cryptographic Data Processing A hybrid quantum- generative computing system (100) for high-fidelity event-horizon simulation and secure cryptographic data processing is disclosed. The system acquires astrophysical, scientific, industrial or operational telemetry (101), preprocesses and encodes the telemetry (102) into quantum-state representations (103) and evaluates the encoded states using one or more quantum variational circuits (104) to model state evolution, uncertainty and event-horizon behaviour. A generative processing architecture (105) produces high-fidelity synthetic telemetry, entropy distributions, event representations and explanatory information from the quantum-derived outputs. An explainable artificial intelligence verification engine (106) validates the generated outputs by determining feature contributions, computational relevance, consistency and trustworthiness prior to cryptographic processing. Validated entropy is supplied to a secure cryptographic subsystem (107) configured to generate, condition, store and protect cryptographic identifiers and security keys for authenticated communication (109). The integrated architecture provides unified quantum computation, generative intelligence, explainable validation, entropy verification and secure cryptographic processing for secure deployment across scientific, industrial, communication, financial, defence and critical-infrastructure applications.
Disclaimer: Curated by HT Syndication.