MUMBAI, India, July 7 -- Intellectual Property India has published a patent application (202521129832 A) filed by Dkte Societys Textile And Engineering Institute; Miss S. S. Teli; Mr. Adarsh Herwade; Mr. Ayushman Joshi; Mr. Pranav Chavan; Mr. Jagdish Murgude; Mr. Rohit Kumbhar; and Mr. Prathamesh Salokhe on December 22, 2025, for Adaptive Condition-Based Fire And Smoke Detection System With Hyperspectral Particle Analysis.
Inventors include Miss S. S. Teli; Mr. Adarsh Herwade; Mr. Ayushman Joshi; Mr. Pranav Chavan; Mr. Jagdish Murgude; Mr. Rohit Kumbhar; and Mr. Prathamesh Salokhe.
The application for the patent was published on July 03, 2026, under issue no. 27/2026.
Abstract: Adaptive Condition-Based Fire and Smoke Detection System with Hyperspectral Particle Analysis This invention describes an adaptive fire and smoke detection system designed to provide reliable early hazard recognition in specialized environments where conventional detectors are prone to error. The system incorporates a multi-stage particle analysis chamber utilizing hyperspectral light scattering to discriminate combustion particulates from non-combustion aerosols such as steam, vapor, or cryogenic mist. A condition- based activation framework maintains the device in low-power passive mode and engages full diagnostic functionality only upon detection of precursor anomalies, including volatile organic compound elevation, abnormal carbon dioxide gradients, oxygen displacement, or structural micro-vibrations. Geo-linked hazard profiling enables threshold adjustment for specific risk environments, while a machine learning algorithm continuously calibrates sensitivity parameters to minimize false alarms. Alerts are disseminated via redundant communication channels including wireless networks, cloud notifications, and GSM modules. The invention thereby achieves early, precise hazard detection while reducing false alarms and operational disruptions across industrial, residential, and cryogenic storage facilities.
Disclaimer: Curated by HT Syndication.