MUMBAI, India, Aug. 12 -- Intellectual Property India has published a patent application (202621076225 A) filed by Dr. Sunita Rajendra Dandwate; Dr. Jayavelu Damodhrakrishnan; and Mr. Prajwal Rajendra Dandwate on June 19, 2026, for Method And System For Thermal Energy Measurement Using Smart Sensor Networks..

Inventors include Dr. Sunita Rajendra Dandwate; Dr. Jayavelu Damodhrakrishnan; and Mr. Prajwal Rajendra Dandwate.

The application for the patent was published on August 07, 2026, under issue no. 32/2026.

Abstract: ABSTRACT Thermal Energy Measurement Method and System Based on Smart Sensor Networks. The present invention relates to an intelligent thermal energy measurement framework based on smart sensor networks for continuous measurement, analysis and management of thermal energy across distributed operational infrastructures. The invention combines the capabilities of smart temperature sensing nodes, wireless communication modules, adaptive processing systems, cloud- based monitoring platforms and analytical engines, enabling the precise and accurate measurement of thermal parameters such as thermal differentials, heat transfer rates, energy flow characteristics and thermal efficiency metrics in real-time. The disclosed system has been designed using a network of wireless sensor nodes that are able to sense, preprocess, synchronize, and communicate autonomously to provide reliable thermal energy monitoring in industrial, commercial, residential and smart grid applications. The invention also includes edge computing capabilities, predictive maintenance systems, anomaly detection, and cloud-based analytics for detection of thermal inefficiencies, equipment abnormalities, and operational energy losses. The system can send alerts if the temperatures are out of normal limits, optimize the thermal operations and assist automated energy management methods. The proposed invention offers an intelligent solution for thermal infrastructure management which is scalable, cost-effective, secure and energy-efficient in today's context.

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