MUMBAI, India, Sept. 28 -- Intellectual Property India has published a patent application (202521015424 A) filed by Rungta International Skills University; Rungta College Of Engineering & Technology; and Rungta College Of Pharmaceutical Sciences And Research on February 22, 2025, for A Portable Blockchain-Integrated System For Real-Time Media Authentication And Deepfake Detection.

Inventors include Teekeshwari Deshmukh; Richa Sharma; Divya Nair; Nikita Sinha; Shubhangi Yadav; Fardeen Khan; Sneha Yadav; Allind Sahu; Prateek Dubey; and Shivam Sahu.

The application for the patent was published on September 25, 2026, under issue no. 39/2026.

Abstract: A Portable Blockchain-Integrated System for Real-Time Media Authentication and Deepfake Detection This invention describes a portable AI-driven media verification system designed for real-time authentication of digital media, including images, videos, and audio recordings. The system integrates AI-based deepfake detection, blockchain-secured authentication, contextual awareness analysis, privacy-preserving local processing, and adaptive learning mechanisms to ensure the accuracy and integrity of media verification. The AI-powered engine analyzes media for structural inconsistencies, voice anomalies, and forensic content manipulation, while the blockchain framework generates cryptographic signatures to maintain tamper-proof verification records. A contextual analysis module cross-references media with global news and factual databases, detecting misinformation patterns. The system ensures on-device processing, safeguarding user privacy while enabling decentralized authentication without reliance on cloud infrastructures. Its adaptive learning module continuously refines verification models, ensuring resilience against evolving deepfake methodologies. The invention provides a legally defensible, functionally autonomous, and technologically advanced solution for real-time media authentication across forensic, journalistic, and regulatory domains.

Disclaimer: Curated by HT Syndication.