Microcontroller Gesture Controlled Lifeguard Robot

Lifeguard using Gesture Control When a human falls in the sea, a robot will return him to the seashore, which will be controlled by another guy. The transmitter's complexity will be reduced thanks to gesture control. If any folks on the beach are able to access the lifeguard robot, they can save a h

2025-06-28 16:28:35 - Adil Khan

Project Title

Microcontroller Gesture Controlled Lifeguard Robot

Project Area of Specialization Electrical/Electronic EngineeringProject Summary

Lifeguard using Gesture Control When a human falls in the sea, a robot will return him to the seashore, which will be controlled by another guy. The transmitter's complexity will be reduced thanks to gesture control. If any folks on the beach are able to access the lifeguard robot, they can save a human life.
Using the NRF24L01 Transceiver module, ADXL335 can measure x and y according to hand gestures and communicate values to Ardino nano via wireless connection.
Data is received via wireless transmission from the NRF24L01 to the L298N motor driver. The motors are controlled by the Arduino nano using the L298N motor drive, and they work in different ways.
Saving the lives of those who fall into the sea, lake, or ocean.

Project Objectives

Saving the lives of people who fall into the sea, lake, ocean, swimming pool, or amusement park.

Project Implementation Method

Gesture Control Life Guard Robot which will get back the human when fall in the sea to the sea shore controlled by the another man at the sea shore. The gesture control will reduce the complexity of the transmitter side. If any people at the sea shore can able to access the life guard robot to save the human life. This project consists of Transmitter and Receiver side . The ADXL 335 accelerometer sensor collects data from hand gesture of the human and sent to the Arduino nano microcontroller.

Benefits of the Project

 No one will perish if they fall into the water. Invention can be used in a variety of settings, including the sea, river, lake, swimming pool, and amusement park. In our innovation, we have an unique controlling technology that allows for effortless receiver control.

Technical Details of Final Deliverable

Design and Implementation of a Hand Movement Controlled Robotic Vehicle with Wireless Live Streaming Feature" describes the design and implementation of a robot vehicle that can be controlled from all directions using hand gestures, as well as a wifi camera mounted on the robot's top for wireless streaming to the user.

Final Deliverable of the Project HW/SW integrated systemCore Industry OthersOther IndustriesCore Technology RoboticsOther TechnologiesSustainable Development Goals Life Below WaterRequired Resources
Item Name Type No. of Units Per Unit Cost (in Rs) Total (in Rs)
Total in (Rs) 67720
sensor Equipment411004400
transceiver Equipment6120720
motor driver Equipment53501750
wires Equipment1050500
bread board Equipment38502550
PCB Equipment610006000
Arduino Equipment230006000
ultra sonic sensor Equipment4300012000
resistors Equipment12110013200
led Equipment5120600
Integrated circuits Equipment75003500
microcontroller Equipment55002500
gyro sensor Equipment52801400
propeller Equipment35001500
battery Equipment55002500
bms it Equipment312003600
other Miscellaneous 105005000

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