MUMBAI, India, Aug. 17 -- Intellectual Property India has published a patent application (202641089075 A) filed by Jeppiaar Institute Of Technology Jit on July 22, 2026, for Novel System,design And Method Of Ai-Driven Multi-Mission Autonomous And Remotely Controlled Vtol System With Intelligent Vehicle Pursuit.

Inventors include S. Parthasarathy; A. K. Niranjan; S. Preetham Prasad; P. Gokulakannan; M. Kaviyarasu; and M Sarojini.

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

Abstract: ABSTRACT OF THE INVENTION The patent disclosure covers Novel System, Design and Method of Al-Driven Multi-Mission Autonomous and Remotely Controlled VTOL System with Intelligent Vehicle Pursuit. The Al-Driven Multi-Mission Autonomous and Remotely Controlled VTOL System with Intelligent Vehicle Pursuit is an advanced aerial platform designed to perform 'search and rescue operations, emergency response missions, intelligent surveillance, and autonomous vehicle tracking in complex operational environments. The proposed invention integrates Vertical Take-Off and Landing (VTOL) technology with artificial intelligence, autonomous navigation algorithms, computer vision, and real-time communication systems to achieve highly efficient mission execution. The hybrid VTOL architecture combines the hovering capabilities of rotary-wing aircraft with the long-range and high-speed performance of fixed-wing aircraft. The system utilizes advanced multi-sensor fusion techniques incorporating cameras, GPS, inertial measurement units, LiDAR, and environmental sensors to ensure precise navigation and situational awareness. Artificial intelligence algorithms enable autonomous target detection, classification, tracking, and intelligent vehicle pursuit while adapting dynamically to changing environments. The system supports both fully autonomous and remotely controlled operational modes for enhanced mission flexibility. An integrated solar-assisted emergency backup power mechanism ensures uninterrupted operation during critical missions and power failures

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