In the last years, the self-balancing platform has become one of the most common candidates to use in many applications such as flight, biomedical fields, and industry. In this paper, the physical prototype of a proposed self-balancing platform that described the self-balancing attitude in the (X-axis, Y-axis, or biaxial) under the influence of road disturbance has been introduced. In the physical prototype, the inertial measurement unit (IMU) sensor will sense the disturbance in (X-axis, Y-axis, and biaxial). With the determined error, the corresponding electronic circuit, DC servo motors, and the Arduino software, the platform overcame the tilt angle(disturbance). Optimization of the proportional-integral-derivative (PID) controllers’ coe...
Two wheeled balancing robots are based on inverted pendulum configuration which relies upon dynamic ...
Two wheeled balancing robots are based on inverted pendulum configuration which rely upon dynamic ba...
The purpose of this study is to develop a self-balancing controller (SBC) for one-wheeled vehicles (...
In the last years, the self-balancing platform has become one of the most common candidates to use i...
This paper represents the designing, building, and testing of a self-stabilizing platform mounted on...
The primary goal of the project would be to development and design of the efficient and effective ha...
Self-balancing robot is based on the principle of Inverted pendulum, which is a two-wheel vehicle ba...
In this project a remote controlled self-balancing mobile robot was designed, built and controlled. ...
The use of accelerometers and gyroscopes has greatly increased in recent years, different applicatio...
Self-balancing platforms are used in a variety of industries such as in construction to ensure a lev...
Personal balancing transporter now be operating widely in every country and closely interacting wit...
This conference paper was presented in the 10th France-Japan/8th Europe-Asia Congress on Mecatronics...
Self-balancing robot is based on the principle of Inverted pendulum, which is a two wheel vehicle ba...
To make a robot that can balance on two wheels. There will be only one axle connecting the two wheel...
Robotic mobility technologies have become more and more popular over the past few years. The inverte...
Two wheeled balancing robots are based on inverted pendulum configuration which relies upon dynamic ...
Two wheeled balancing robots are based on inverted pendulum configuration which rely upon dynamic ba...
The purpose of this study is to develop a self-balancing controller (SBC) for one-wheeled vehicles (...
In the last years, the self-balancing platform has become one of the most common candidates to use i...
This paper represents the designing, building, and testing of a self-stabilizing platform mounted on...
The primary goal of the project would be to development and design of the efficient and effective ha...
Self-balancing robot is based on the principle of Inverted pendulum, which is a two-wheel vehicle ba...
In this project a remote controlled self-balancing mobile robot was designed, built and controlled. ...
The use of accelerometers and gyroscopes has greatly increased in recent years, different applicatio...
Self-balancing platforms are used in a variety of industries such as in construction to ensure a lev...
Personal balancing transporter now be operating widely in every country and closely interacting wit...
This conference paper was presented in the 10th France-Japan/8th Europe-Asia Congress on Mecatronics...
Self-balancing robot is based on the principle of Inverted pendulum, which is a two wheel vehicle ba...
To make a robot that can balance on two wheels. There will be only one axle connecting the two wheel...
Robotic mobility technologies have become more and more popular over the past few years. The inverte...
Two wheeled balancing robots are based on inverted pendulum configuration which relies upon dynamic ...
Two wheeled balancing robots are based on inverted pendulum configuration which rely upon dynamic ba...
The purpose of this study is to develop a self-balancing controller (SBC) for one-wheeled vehicles (...