• Title/Summary/Keyword: 노지용 플랫폼

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노지 밭고랑 환경 적용을 위한 자율조향 플랫폼 개발 (Development of Autonomous Steering Platforms for Upland Furrow)

  • 조용준;윤해룡;홍형길;오장석;박희창;강민수;박관형;서갑호;김순덕;이영태
    • 한국기계가공학회지
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    • 제20권9호
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    • pp.70-75
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    • 2021
  • We developed a platform that was capable of autonomous steering in a furrow environment. It was developed to autonomously control steering by recognizing the furrow using a laser distance, three-axis tilt, and temperature sensor. The performance evaluation indicated that the autonomous steering success rate was 99.17%, and it was possible to climb up to 5° on the slope. The usage time was approximately 40 h, and the maximum speed was 6.7 km/h.

밭 노지 작업을 위한 모듈형 농업 로봇 플랫폼 개선에 관한 연구 (Improvements to a Modular Agricultural Robot Platform for Field Work)

  • 김동우;홍형길;조용준;윤해룡;오장석;강민수;박희창;서갑호
    • 한국기계가공학회지
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    • 제20권10호
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    • pp.80-87
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    • 2021
  • Our study introduces an improved modular agricultural platform to provide convenience to agricultural workers. We upgrade the platform design in three parts, namely, by adding a 458 pattern tire, electricity control, and four-wheel steering function, to improve the platform performance. Results showed that the upgrades enhanced the platform performance and reduced its overall weight as compared with the existing platform. To demonstrate the performance of our improved platform, we conducted five types of experiments with respect to the climbing angle, variable width, attitude control, speed, and obstacle passing.

밭 노지 환경 주행을 위한 모듈형 농업 로봇 플랫폼에 대한 연구 (A Study on Modular Agricultural Robotic Platform for Upland)

  • 조용준;우성용;송수환;홍형길;윤해룡;오장석;김준성;김동우;서갑호;김대희
    • 로봇학회논문지
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    • 제15권2호
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    • pp.124-130
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    • 2020
  • This paper designed modular agricultural robotic platform capable of a variety of agricultural tasks to address the problems caused by a decline in agricultural populations and an increase in average age. We propose a modular robotic platform that can perform many tasks required in field farming by replacing only work modules with common robotic platforms. This platform is capable of steering while driving on four wheels in an upland environment where farm work is performed, and an attitude control module is attached to each drive module to control the attitude of the platform. In addition, the width of the platform is designed to be variable in order to operate in various ridges according to the crop cultivation method. Finally, we evaluated five items: variable width, gradient, attitude control angle, step and road speed in order to carry out the farming industry while maintaining a stable posture.