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![]() ![]() Set up the Raspberry Pi's GPIO pins for controlling the motor driver and reading sensor values. Install Raspbian or any other suitable operating system on the Raspberry Pi. Breadboard, jumper wires, and other necessary components for circuit connections Power supply (batteries or external power source) Sensors (such as ultrasonic sensor, line following sensor, etc.) for environment detection DC motors and wheels for the car's movement Motor driver board (such as L293D or L298N) to control the motors Raspberry Pi (any model with GPIO pins) ![]() Here's a general overview of the components and steps involved in creating a sensor-based car automation system using a Raspberry Pi and Python: Additionally, the specific sensors and motors you choose may vary based on your requirements. ![]() While I can provide you with a basic outline of the necessary components and code structure, it's important to note that building a complete system requires expertise in electronics and programming. Developing a sensor-based car automation system using a Raspberry Pi and Python involves integrating various hardware components, including sensors and motors, and writing the corresponding software code. ![]()
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