MUMBAI, India, Aug. 17 -- Intellectual Property India has published a patent application (202621077187 A) filed by Dr. Nitin Kundlik Kamble; Najuka Bhagwan Jagtap; Dr. Shikha Garg; Mr. Anil Kumar; Miss. Pradnya A. Jadhav; Dr. Ajay Kumar Maurya; Dr. Sheri Deepika; Dr. Komal Garg; Dr. Arun Kumar Sao; Smilarubavathy G; M. Uday Raj Kumar; and M K. Kirubakaran on June 22, 2026, for An Automated Process Control System Using Sensor-Driven Feedback Mechanisms.

Inventors include Dr. Nitin Kundlik Kamble; Najuka Bhagwan Jagtap; Dr. Shikha Garg; Mr. Anil Kumar; Miss. Pradnya A. Jadhav; Dr. Ajay Kumar Maurya; Dr. Sheri Deepika; Dr. Komal Garg; Dr. Arun Kumar Sao; Smilarubavathy G; M. Uday Raj Kumar; and M K. Kirubakaran.

The application for the patent was published on August 14, 2026, under issue no. 33/2026.

Abstract: The present invention relates to an automated process control system using sensor-driven feedback mechanisms for real-time monitoring and regulation of process parameters. The system is designed to continuously sense one or more operating conditions such as temperature, pressure, flow rate, humidity, liquid level, speed, vibration, gas concentration, pH value, or other measurable parameters in an industrial, commercial, agricultural, or smart automation environment. The sensed data is transmitted to a controller through a signal conditioning unit, where the measured values are compared with predefined set points or threshold limits. When any deviation from the desired range is detected, the controller generates suitable control signals to operate actuators such as pumps, motors, valves, heaters, fans, relays, solenoids, or other output devices. The actuator response corrects the process condition, and the updated condition is again measured by the sensors, thereby forming a closed-loop feedback mechanism. The system may further include a user interface, alarm unit, data logging module, and wired or wireless communication facility for real-time display, fault indication, remote monitoring, and performance analysis. During abnormal or unsafe conditions, the system can generate warnings, stop equipment, or perform safe shutdown operations. The invention reduces manual intervention, minimizes human error, improves process accuracy, enhances operational safety, saves energy, and increases overall productivity. The system is flexible, cost-effective, and adaptable for various applications including manufacturing, water treatment, food processing, HVAC, chemical processing, agriculture, and smart industrial automation.

Disclaimer: Curated by HT Syndication.