MUMBAI, India, Aug. 10 -- Intellectual Property India has published a patent application (202641090566 A) filed by Madhankumar C; Parvin Kumar Chaudhari - Kashi Institute Of Technology; Dr. B. Annapoorani - V. S. B. College Of Engineering Technical Campus; Bobbala Sreedevi - Vaagdevi College Of Engineering; S. Vaishali - Vaagdevi College Of Engineering; Komandla Swapna - Vaagdevi College Of Engineering; and G. Maryam Banu - Kongunadu College Of Engineering And Technology on July 24, 2026, for Neuroquantum Holographic Intelligent Communication Fabric: A Self Evolving Reconfigurable Electromagnetic Computing Architecture For Autonomous 6g And Beyond Wireless Networks.
Inventors include Parvin Kumar Chaudhari - Kashi Institute Of Technology; Dr. B. Annapoorani - V. S. B. College Of Engineering Technical Campus; Bobbala Sreedevi - Vaagdevi College Of Engineering; S. Vaishali - Vaagdevi College Of Engineering; Komandla Swapna - Vaagdevi College Of Engineering; and G. Maryam Banu - Kongunadu College Of Engineering And Technology.
The application for the patent was published on July 31, 2026, under issue no. 31/2026.
Abstract: Abstract NeuroQuantum Holographic Intelligent Communication Fabric: A Self Evolving Reconfigurable Electromagnetic Computing Architecture for Autonomous 6G and Beyond Wireless Networks The present invention discloses a NeuroQuantum Holographic Intelligent Communication Fabric (NQ-HICF), a self-evolving and reconfigurable electromagnetic computing architecture designed to support autonomous 6G and beyond wireless communication networks. The proposed architecture integrates artificial intelligence, quantum-inspired optimization, holographic communication, programmable electromagnetic metasurfaces, edge intelligence, digital twins, and software-defined networking to establish an adaptive, intelligent, and ultra-efficient communication framework capable of addressing the increasing demands of next-generation wireless ecosystems. The proposed system employs distributed intelligent nodes equipped with programmable reconfigurable intelligent surfaces (RIS), holographic multiple input multiple-output (H-MIMO) antennas, and AI-enabled electromagnetic controllers that continuously sense the surrounding radio environment. Real-time network information, including channel conditions, user mobility, interference patterns, spectrum utilization, latency requirements, and energy consumption, is collected and processed through a hierarchical edge-cloud computing infrastructure. Advanced deep learning, reinforcement learning, graph neural networks, and quantum-inspired optimization algorithms dynamically optimize beamforming, spectrum allocation, routing, resource scheduling, and electromagnetic wave propagation with minimal human intervention. The architecture further incorporates a digital twin framework that continuously models physical network behavior in a virtual environment, enabling predictive maintenance, autonomous fault diagnosis, proactive resource optimization, and real-time network reconfiguration. Holographic electromagnetic computing enables seamless manipulation of radio wavefronts to improve signal coverage, spectral efficiency, and communication reliability in highly dynamic environments. A self-evolving cognitive engine continuously updates learning models using federated learning techniques while preserving user privacy and minimizing communication overhead. The invention further integrates blockchain-assisted security mechanisms, zero trust authentication, explainable artificial intelligence (XAI), and post-quantum cryptographic protocols to ensure secure, trustworthy, and resilient wireless communications against emerging cyber threats. The proposed communication fabric supports intelligent applications including autonomous transportation, smart cities, industrial automation, digital healthcare, extended reality (XR), satellite-terrestrial integrated networks, unmanned aerial vehicle (UAV) communications, and massive Internet of Things (IoT) deployments. The disclosed invention significantly enhances network intelligence, spectrum efficiency, energy optimization, communication reliability, scalability, and autonomous decision-making while reducing latency, operational complexity, and infrastructure costs. The proposed NeuroQuantum Holographic Intelligent Communication Fabric provides a transformative platform for realizing secure, adaptive, self-learning, and fully autonomous 6G and beyond wireless communication systems.
Disclaimer: Curated by HT Syndication.