日本フィジカルAI新聞

世界のフィジカルAIを、日本語で。

週刊ニュースレター購読
移動ロボットナビゲーションarXiv:2401.01756

屋外移動ロボットのためのファジィ論理制御器設計

Fuzzy Logic Controller Design for Mobile Robot Outdoor Navigation

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GPSと近接センサを用いた差動二輪移動ロボットの自律ナビゲーションを、ファジィ論理制御で実現し、障害物回避を含む経路計画をシミュレーションで検証した。

著者: Assefinew Wondosen, Dereje Shiferaw

分類: cs.RO, cs.SY, eess.SY

原文アブストラクト

Many researchers around the world are researching to get control solutions that enhance robots' ability to navigate in dynamic environments autonomously. However, until these days robots have limited capability and many navigation tasks on Earth and other planets have been difficult so far. This paperwork presents the development of a control system for a differential drive-wheeled mobile robot that autonomously controls its position, heading, and speed based on destination information given and surrounding data gathered through mounted proximity and GPS sensors. The intelligence of this control system is implemented by using a fuzzy logic algorithm which is a very powerful tool to handle un-modeled systems like the dynamically changing environment dealt with in this research. The fuzzy controller is used to address the problems associated with navigation in an obstacle-strewn environment. Such issues include position estimation, path planning, and obstacle avoidance. In this study modeling, design, and simulation of the system have been done. The simulation result shows that the developed mobile robot travels successfully from any location to the destination location without colliding with obstacles.

関連論文

PR本紙発行元 EmplifAI