MUMBAI, India, Oct. 5 -- Intellectual Property India has published a patent application (202641115761 A) filed by Dinesh Kumar S; Karpaga Vinayaga College Of Engineering And Technology, Karpaga; Vennila C; S. Ranjith; C. Guru Akash; K. M. Reyashini; K. Monisha; P. Jai Prakash; and S. Meganathan on September 28, 2026, for Ai Integrated Smart Stroller For Babies.
Inventors include Vennila C; S. Ranjith; C. Guru Akash; K. M. Reyashini; K. Monisha; P. Jai Prakash; and S. Meganathan.
The application for the patent was published on October 02, 2026, under issue no. 40/2026.
Abstract: The AI Integrated Smart Baby Stroller is an intelligent safety and mobility system developed to enhance the safety, comfort, and convenience of babies and their caregivers. The proposed system integrates artificial intelligence, embedded systems, sensors, IoT, and robotic automation to provide smart assistance and continuous monitoring during stroller operation. The stroller incorporates ultrasonic/IR sensors, temperature and humidity sensors, moisture sensors, GPS, and a camera module to monitor the surrounding environment and relevant baby conditions. AI-based computer vision is employed for obstacle detection and assisted navigation, while an automatic braking mechanism helps reduce the risk of collisions and unintended movement. Environmental parameters are continuously monitored, and alerts can be generated when unsafe or abnormal conditions are detected. For enhanced parental convenience, the stroller communicates with a mobile application through wireless and IoT technologies, enabling caregivers to monitor sensor data, receive safety notifications, track the stroller's location, and control selected functions remotely. Additional features such as proximity alerts, anti-theft protection, automated rocking, and soothing audio can further improve the overall functionality of the system. The proposed design follows a human-in-the-loop safety approach, in which AI assists the caregiver rather than replacing human supervision. A microcontroller or single-board computer coordinates sensor acquisition, AI processing, wireless communication, and actuator control. The system therefore integrates key areas of robotics, embedded systems, artificial intelligence, computer vision, IoT, and mechanical design into a single application. The primary objective is to develop a low- cost, modular, and scalable prototype that demonstrates the practical application of AI and IoT technologies in improving baby-stroller safety and usability. The prototype will be evaluated based on obstacle-detection accuracy, braking response, environmental monitoring, location tracking, communication reliability, and overall system safety.
Disclaimer: Curated by HT Syndication.