TY - JOUR
T1 - Design of in-pipe robot based on inertial positioning and visual detection
AU - Song, Hua
AU - Ge, Kunshan
AU - Qu, Di
AU - Wu, Huapu
AU - Yang, Jing
N1 - Publisher Copyright:
© The Author(s) 2016.
PY - 2016/9/1
Y1 - 2016/9/1
N2 - The horizontal directional drilling technology is widely used to lay the underground pipelines. These pipelines are of small or medium diameters with a dip angle ranging from 10° to 20°, special pipelines to 30°. In-pipe robot is commonly used to detect the pipeline fault. A new type of telescopic in-pipe robot is designed in this article, which is driven by step motor and screw, and supported by wheels. The robot has advantages of waterproof grade of IP68, stable motion state, and larger traction force. The speed is between telescopic robots and wheeled robots. Through force analysis and calculation, its maximum climbing angle is larger than 35°. The robot has good passing ability through the pipelines with bends. The inertial technology is used to locate the robot under the condition of disturbances. The pipeline fault detection algorithm based on the visual identification technology is designed to detect the pipeline fault. It can not only achieve autonomic positioning but also detect the pipeline fault.
AB - The horizontal directional drilling technology is widely used to lay the underground pipelines. These pipelines are of small or medium diameters with a dip angle ranging from 10° to 20°, special pipelines to 30°. In-pipe robot is commonly used to detect the pipeline fault. A new type of telescopic in-pipe robot is designed in this article, which is driven by step motor and screw, and supported by wheels. The robot has advantages of waterproof grade of IP68, stable motion state, and larger traction force. The speed is between telescopic robots and wheeled robots. Through force analysis and calculation, its maximum climbing angle is larger than 35°. The robot has good passing ability through the pipelines with bends. The inertial technology is used to locate the robot under the condition of disturbances. The pipeline fault detection algorithm based on the visual identification technology is designed to detect the pipeline fault. It can not only achieve autonomic positioning but also detect the pipeline fault.
KW - Telescopic in-pipe robot
KW - finite-state machine
KW - inertial positioning
KW - pipeline fault detection
KW - visual identification technology
UR - https://www.scopus.com/pages/publications/84989913289
U2 - 10.1177/1687814016667679
DO - 10.1177/1687814016667679
M3 - 文章
AN - SCOPUS:84989913289
SN - 1687-8132
VL - 8
SP - 1
EP - 22
JO - Advances in Mechanical Engineering
JF - Advances in Mechanical Engineering
IS - 9
ER -