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Obstacle negotiation for the rescue robot with variable single-tracked mechanism

Keun Ha Choi, Hae Kwan Jeong, Kyung Hak Hyun, Hyun Do Choi, Yoon Keun Kwak

Year
2007
Citations
19

Abstract

The purpose of this paper is to provide a practical introduction to a mobile robot developed for rescue operations. The robot has a variable single-tracked mechanism for the driving part, making it inherently able to overcome indoor obstacles such as stairs. In this research, the robot is given the capacity of obstacle negotiation as a hardware attachment in order to realize autonomous navigation that is well matched to an original target, rescue operation. There are three driving modes to choose from, and the robot recognizes the forward environment once and estimates whether or not any obstacles are there. Experimental results show that the robot moves in opposition to several obstacles, reflecting the proposed algorithm ultimately.

Keywords

ObstacleMobile robotRobotRescue robotComputer scienceMechanism (biology)Mobile robot navigationSimulationRobot controlVariable (mathematics)

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