Empowering Robotics with Vision, Precision, and Intelligence

Adithya Chinnakkonda, Specializing in Autonomous Mobile Robots and Robotic Manipulators for Real-World Applications

PIONEERING ROBOTICS SOLUTIONS FOR A SMARTER TOMORROW

With years of experience in developing and deploying autonomous mobile robots and manipulators, I specialize in creating cutting-edge solutions that bridge innovation and real-world applications. From advanced navigation systems to AI-driven perception, my work transforms industrial challenges into opportunities for growth.

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My Projects

Explore my portfolio of robotics innovations, featuring an Autonomous Mobile Robot (AMR) for industrial 3D mapping, a vision-based robotic manipulator for dynamic object handling, and AI-driven motion planning for legged robots. These projects showcase cutting-edge integration of AI, computer vision, and advanced robotics to solve complex industrial challenges.

Autonomous Mobile Robot (AMR) for Industrial Mapping

Robotic Manipulator with Vision-Based Perception

AI-Driven Motion Planning for Legged Robots

RESEARCH PROJECTS

My research explores robotics and AI, emphasizing diffusion-based learning to enhance perception, control, and adaptability in autonomous systems. By integrating techniques like probabilistic modeling, visual-inertial odometry, and agile locomotion, I bridge theoretical advancements with real-world applications, driving innovation in intelligent robotics.

HOBBY PROJECTS

Exploring robotics beyond the professional realm, my hobby projects reflect my passion for hands-on innovation and learning. These projects allowed me to experiment with advanced technologies, from building a DIY quadruped robot to creating a modular AI-powered mini car. Each project represents a step forward in my journey to understand and innovate in the field of robotics

About

Adithya Kumar Chinnakkonda Ravi

Robotics Engineer

Robotics engineer with 4+ years of experience, including 2+ years full-time in developing autonomous mobile robots (AMRs) and robotic manipulators at Synergeticon GmbH. Skilled in 3D vision systems, robotics middleware, and scalable system design. Experienced with legged robots through research at TU Munich’s ATARI Group (2023–2024) and Max Planck Institute Tübingen, focusing on AI planning in dynamic environments and reinforcement learning. Passionate about delivering innovative robotics solutions from concept to deployment, with strong problem-solving abilities, effective communication, and a collaborative mindset.

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