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    Autonomous Stair Climbing Algorithm for a Small Four-Tracked Robot

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    https://www.riss.kr/link?id=A103001506

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    In outdoor environments, mobility, adaptability and reliability of a robot are more important than its speed and precise trajectory. From a practical point of view, tracked robots have an advantage over wheeled robots in outdoor applications. The tracked robot is frequently operated by using the remote controller, but the remote operation is not effective for all cases. To overcome some complex obstacles such as rocks or stairs, the information related to the robot posture is required. However, the sensor information is not intuitive to the user to control the robot. In this research, a multi-active crawler robot (MACbot) was developed and the autonomous stair climbing algorithm was implemented to deal with those problems. Various experiments show that the MACbot can climb the stair autonomously.
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    In outdoor environments, mobility, adaptability and reliability of a robot are more important than its speed and precise trajectory. From a practical point of view, tracked robots have an advantage over wheeled robots in outdoor applications. The trac...

    In outdoor environments, mobility, adaptability and reliability of a robot are more important than its speed and precise trajectory. From a practical point of view, tracked robots have an advantage over wheeled robots in outdoor applications. The tracked robot is frequently operated by using the remote controller, but the remote operation is not effective for all cases. To overcome some complex obstacles such as rocks or stairs, the information related to the robot posture is required. However, the sensor information is not intuitive to the user to control the robot. In this research, a multi-active crawler robot (MACbot) was developed and the autonomous stair climbing algorithm was implemented to deal with those problems. Various experiments show that the MACbot can climb the stair autonomously.

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    목차 (Table of Contents)

    • Abstract
    • 1. INTRODUCTION
    • 2. MULTI-ACTIVE CRAWLER ROBOT
    • 3. STABILITY ANALYSIS
    • 4. AUTONOMOUS STAIR CLIMBING
    • Abstract
    • 1. INTRODUCTION
    • 2. MULTI-ACTIVE CRAWLER ROBOT
    • 3. STABILITY ANALYSIS
    • 4. AUTONOMOUS STAIR CLIMBING
    • 5. EXPERIMENTS
    • 6. CONCLUSIONS
    • ACKNOWLEDGEMENT
    • REFERENCES
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