MUMBAI, India, July 7 -- Intellectual Property India has published a patent application (202641079470 A) filed by Chandrika Nagallapati; Cmr Institute Of Technology, Bengaluru; and Heartfulvision Ai Private Limited Company on June 28, 2026, for Title: Ai-Driven Physiological Feedback And Environmental Regulation System For Smart Workspace.
Inventors include Chandrika Nagallapati; Cmr Institute Of Technology, Bengaluru; Heartfulvision Ai Private Limited Company; Prajna S. V; Tirumala; Sushmitha M; Parul; Vaishnavi S. Turamari; Shree Lakshmi H; Vidyesh Hegde; Upendra Kumar; and Jesse Rezin Grand.
The application for the patent was published on July 03, 2026, under issue no. 27/2026.
Abstract: The present invention relates to an Artificial Intelligence (AI)-driven physiological feedback and environmental regulation system designed for smart workspaces. The invention continuously monitors the physical well-being of occupants using wearable and non- contact sensors that capture parameters such as heart rate, body temperature, blood oxygen level, stress, fatigue, posture, and respiratory rate. At the same time, environmental sensors measure indoor conditions including temperature, humidity, air quality, lighting, noise, and carbon dioxide levels. An AI-based decision engine analyses both physiological and environmental data in real time to understand the user's comfort, health, and productivity requirements. Based on the analysis, the system automatically adjusts workspace conditions by controlling lighting, ventilation, air conditioning, humidity, and air purification systems to create a personalized and comfortable working environment. The system continuously learns individual preferences and adapts its recommendations and control strategies over time. In addition to environmental regulation, the invention provides wellness notifications such as posture correction, hydration reminders, stress management suggestions, and break alerts to help reduce fatigue and improve employee well-being. The system can also be integrated with existing smart building infrastructure and cloud platforms for centralized monitoring, analytics, and remote management while ensuring secure handling of user data. The proposed invention offers a human-centric approach to workspace automation by combining physiological monitoring with intelligent environmental control. Unlike conventional smart office systems that rely only on preset environmental parameters or occupancy detection, the proposed system dynamically responds to the real-time physical condition of each user. This results in improved comfort, enhanced productivity, better indoor health, optimized energy consumption, and a healthier, more adaptive workplace environment.
Disclaimer: Curated by HT Syndication.