MUMBAI, India, Oct. 5 -- Intellectual Property India has published a patent application (202641115867 A) filed by Sr University on September 28, 2026, for An Intelligent Optimization System For A Cell-Free Massive Multiple-Input Multiple-Output (cf-M Mimo) Integrated Sensing And Communication (isac) Network.
Inventors include Dr. Trilochan Patra; Dr. Joydev Ghosh; Jayanta Kumar Ray; Dipankar Barui; Niratyay Biswas; and Shiv Sharkar Gond.
The application for the patent was published on October 02, 2026, under issue no. 40/2026.
Abstract: AN INTELLIGENT OPTIMIZATION SYSTEM FOR A CELL-FREE MASSIVE MULTIPLE-INPUT MULTIPLE-OUTPUT (CF-M MIMO) INTEGRATED SENSING AND COMMUNICATION (ISAC) NETWORK Sixth-generation (6G) wireless networks require intelligent, energy-efficient, and privacy-preserving architectures capable of supporting both high-speed communication and environmental sensing. Cell-Free Massive Multiple-Input Multiple Output (CF-m MIMO) integrated with Integrated Sensing and Communication (ISAC) has emerged as a promising solution for delivering seamless coverage, enhanced spectral efficiency, and accurate sensing over millimetre-wave (mm Wave) and terahertz (THz) frequency bands. This paper presents an intelligent optimization framework for CF-m MIMO- enabled ISAC networks that dynamically adapts communication and sensing operations according to network traffic, channel conditions, latency requirements, and energy availability through adaptive switching between High-Intelligence and Power-Save modes. The proposed framework combines Deep Reinforcement Learning (DRL) and the Whale Optimization Algorithm (WOA) to optimize resource allocation, distributed beamforming, user association, and power control. Simulation results at 28 GHz, 140 GHz, and 300 GHz demonstrate significant improvements in energy efficiency, spectral efficiency, sensing accuracy, communication reliability, scalability, and privacy compared with conventional approaches. Future work includes real-world hardware implementation and large-scale test bed validation to assess the feasibility and reliability of the proposed framework in dense and smart 6G communication environments.
Disclaimer: Curated by HT Syndication.