TY - GEN
T1 - Key parameter design of wall pressing tracked pipeline robot under multiple constraint conditions
AU - Zheng, Tao
AU - Yuan, Peng
AU - Feng, Shenyao
AU - Tian, Ye
AU - Li, Hui
AU - Huang, Qiang
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - Wall pressing tracked pipeline robots have been widely used due to their high movement speed, strong drag force, and strong environmental adaptability. However, due to limitations such as pipeline diameter and shape, the design of their parameters has become a difficult problem. This article analyzes the design methods for the length, width, and head waist angle of a wall pressing tracked robot constrained by C-shaped and T-shaped pipelines. Firstly, based on the spatial position relationship of the wall pressing track pipeline robot in the C-shaped pipeline, flexibility and passability criteria are proposed based on the selection torque and movable space, respectively. Secondly, combined with the motion mode of multi-stage pipeline robots, the combination of actions through T-shaped pipelines was analyzed, and constraint equations were constructed based on spatial geometric relationships. Genetic algorithms were used to select key parameters of the robot. Finally, considering the constraint effects of C-shaped and T-shaped pipelines, the optimal parameters for robots that can pass through C-shaped and T-shaped pipelines are achieved. The robot and ground testing platform are processed, and the ground testing experiment is conduct. The test results show that the robot can pass through C-shaped and T-shaped pipelines well. The test results indicate that this design method is effective.
AB - Wall pressing tracked pipeline robots have been widely used due to their high movement speed, strong drag force, and strong environmental adaptability. However, due to limitations such as pipeline diameter and shape, the design of their parameters has become a difficult problem. This article analyzes the design methods for the length, width, and head waist angle of a wall pressing tracked robot constrained by C-shaped and T-shaped pipelines. Firstly, based on the spatial position relationship of the wall pressing track pipeline robot in the C-shaped pipeline, flexibility and passability criteria are proposed based on the selection torque and movable space, respectively. Secondly, combined with the motion mode of multi-stage pipeline robots, the combination of actions through T-shaped pipelines was analyzed, and constraint equations were constructed based on spatial geometric relationships. Genetic algorithms were used to select key parameters of the robot. Finally, considering the constraint effects of C-shaped and T-shaped pipelines, the optimal parameters for robots that can pass through C-shaped and T-shaped pipelines are achieved. The robot and ground testing platform are processed, and the ground testing experiment is conduct. The test results show that the robot can pass through C-shaped and T-shaped pipelines well. The test results indicate that this design method is effective.
KW - C-shaped pipeline
KW - Pipeline robot
KW - Spatial constraints
KW - T-shaped pipeline
KW - Wall pressing
UR - https://www.scopus.com/pages/publications/85219559340
U2 - 10.1109/IRAC63143.2024.10871299
DO - 10.1109/IRAC63143.2024.10871299
M3 - Conference contribution
AN - SCOPUS:85219559340
T3 - 2024 International Conference on Intelligent Robotics and Automatic Control, IRAC 2024
SP - 214
EP - 220
BT - 2024 International Conference on Intelligent Robotics and Automatic Control, IRAC 2024
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2024 International Conference on Intelligent Robotics and Automatic Control, IRAC 2024
Y2 - 29 November 2024 through 1 December 2024
ER -