Obstacle avoidance control for a human-operated mobile robot
Obstacle avoidance is an indispensable function in human-operated mobile robots for providing safe and easy operations. This paper presents a new approach to obstacle avoidance for a human-operated mobile robot in unknown environments. A general type of nonholonomic two-wheeled mobile robot with sev...
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Published in | 2008 10th IEEE International Workshop on Advanced Motion Control pp. 468 - 473 |
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Main Authors | , , , |
Format | Conference Proceeding |
Language | English |
Published |
IEEE
01.03.2008
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Abstract | Obstacle avoidance is an indispensable function in human-operated mobile robots for providing safe and easy operations. This paper presents a new approach to obstacle avoidance for a human-operated mobile robot in unknown environments. A general type of nonholonomic two-wheeled mobile robot with several distance sensors to detect obstacles is considered. Because the robot cannot move in arbitrary directions due to a nonholonomic constraint, we propose a model reference control approach in which the robot follows a desired trajectory generated by a reference model. The reference model has steering and brake-like functions that are adjusted according to distance sensor information. The stability of the proposed control system is analyzed with a linear model. The effectiveness of the proposed method is confirmed by experiments in which several unskilled operators handle the robot in a corridor-like space. |
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AbstractList | Obstacle avoidance is an indispensable function in human-operated mobile robots for providing safe and easy operations. This paper presents a new approach to obstacle avoidance for a human-operated mobile robot in unknown environments. A general type of nonholonomic two-wheeled mobile robot with several distance sensors to detect obstacles is considered. Because the robot cannot move in arbitrary directions due to a nonholonomic constraint, we propose a model reference control approach in which the robot follows a desired trajectory generated by a reference model. The reference model has steering and brake-like functions that are adjusted according to distance sensor information. The stability of the proposed control system is analyzed with a linear model. The effectiveness of the proposed method is confirmed by experiments in which several unskilled operators handle the robot in a corridor-like space. |
Author | Shigenori Sano Naoki Uchiyama Tatsuhiro Hashimoto Shoji Takagi |
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Snippet | Obstacle avoidance is an indispensable function in human-operated mobile robots for providing safe and easy operations. This paper presents a new approach to... |
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SubjectTerms | Mechatronics Mobile robot obstacle avoidance Mobile robots Motion control |
Title | Obstacle avoidance control for a human-operated mobile robot |
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