Autonomous Obstacle-Avoidance Robot with Real-Time Navigation
Autonomous Obstacle-Avoidance Robot with Real-Time Navigation
Developed an Arduino-based autonomous robot with ultrasonic sensors and DC motors for real-time obstacle detection and dynamic navigation. Enabled collision-free movement, demonstrating skills in robotics, automation, and intelligent mobility systems.
karan shelke
Data Scientist
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Autonomous Navigation: Robot moves independently without human intervention. Obstacle Detection: Ultrasonic sensors detect obstacles in real time. Dynamic Path Planning: Adjusts movement to avoid collisions based on sensor input. DC Motor Control: Precise forward, backward, and turning movements via motor drivers. Arduino-Based Logic: Centralized control using Arduino programming. Collision-Free Movement: Ensures safe navigation in dynamic environments. Real-Time Responsiveness: Reacts immediately to changing obstacles. Hands-On Robotics Skills: Includes circuit design, programming, and sensor integration. Scalable Design: Can integrate additional features like line-following or IoT monitoring.
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