@inproceedings{685f04c769d4471d8b2b17dd36fb2690,
title = "Kinematics control of wheeled robot based on angular rate sensors",
abstract = "To improve the navigation precision of the ground wheeled robot, implement the autonomous kinematics motion control, and overcome the yawing problem when only using an optical encoder, a small-sized, low cost and reusable independent angular rate sensor (gyroscope) module based on iMEMS technique is used. The kinematics model of the robot is explained, and the principle that a robot can move straight based on a gyroscope is proposed. The angular rate is sampled to get the yawing angle of the robot and then it is inputted into a digital PID controller with a dead zone. The incremental speeds of each of the two driving wheels are calculated to attenuate the deviation. Methods for the robot to turn a fixed angle or move along a polygon are also presented. Experiments show that these algorithms have effectively improved the performance the robot moves rather than using time-consuming algorithms or installing bulky and power cost computers.",
keywords = "Angular rate sensor (gyroscope), Digital pid control, Imems, Kinematics control, Wheeled robot",
author = "Diansheng Chen and Feng, \{B. A.I.\} and Lin, \{W. U.\}",
year = "2008",
doi = "10.1109/RAMECH.2008.4690885",
language = "英语",
isbn = "9781424416769",
series = "2008 IEEE International Conference on Robotics, Automation and Mechatronics, RAM 2008",
pages = "598--602",
booktitle = "2008 IEEE International Conference on Robotics, Automation and Mechatronics, RAM 2008",
note = "2008 IEEE International Conference on Robotics, Automation and Mechatronics, RAM 2008 ; Conference date: 21-09-2008 Through 24-09-2008",
}