• Title/Summary/Keyword: Monitering Robot

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Development of a Monitoring Module for a Steel Bridge-repainting Robot Using a Vision Sensor (비전센서를 이용한 강교량 재도장 로봇의 주행 모니터링 모듈 개발)

  • Seo, Myoung Kook;Lee, Ho Yeon;Jang, Dong Wook;Chang, Byoung Ha
    • Journal of Drive and Control
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    • v.19 no.1
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    • pp.1-7
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    • 2022
  • Recently, a re-painting robot was developed to semi-automatically conduct blasting work in bridge spaces to improve work productivity and worker safety. In this study, a vision sensor-based monitoring module was developed to automatically move the re-painting robot along the path. The monitoring module provides direction information to the robot by analyzing the boundary between the painting surface and the metal surface. To stably measure images in unstable environments, various techniques for improving image visibility were applied in this study. Then, the driving performance was verified in a similar environment.

Development of a Prototype Monitoring Module for Steel Bridge Repainting Robots (강교량 재도장 로봇의 모니터링 모듈 시제품 개발)

  • Seo, Myoung Kook;Lee, Ho Yeon;Park, Il Hwan;Chang, Byoung Ha
    • Journal of Drive and Control
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    • v.17 no.4
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    • pp.15-22
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    • 2020
  • With the need for efficient maintenance technology to reduce maintenance costs for steel bridges, repainting robots are being developed to automate the work in narrow and poor bridge spaces. The repainting robot is equipped with a blasting module to remove paint layers and contaminants. This study developed a prototype monitoring module to be mounted on the repainting robot. The monitoring module analyzes the condition of the painting surface through a camera installed in the front, guides the direction of movement of the robot, and provides the operator with a video to check the working status after blasting through a camera installed in the back. Various image visibility enhancement technologies were applied to the monitoring module to overcome worksite challenges where incomplete lighting and dust occurs.

A Study on Pet-monitoring Robot Design (애완견 모니터링 로봇 디자인 연구)

  • Chung, Yong-Jin
    • The Journal of the Korea Contents Association
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    • v.17 no.8
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    • pp.463-471
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    • 2017
  • Recently, the number of pet-owning households drastically increased and many people took their pets as lifelong companion animals and look after them like their children. Pet business has continued to increase gradually and the need for pet supplies has increased, too. Though there are a variety of pet supplies in pet dog market which takes up many parts in the pet market, there is no design guideline on pet supplies. Thus, there are many wrong pet supplies design created by wrong idea of people. Therefore, this study aims to suggest the guideline on pet supplies design focusing on the pet-monitoring system among the various pet products. So, the pet-monitoring robot was designed to monitor pet simply using smartphone anywhere on the trip and feed by using bowl that control the signal. This study figured out types and function of existing IP camera, reflected the behavior and physical characteristics of pets and suggested the design guideline which is minimum required as pet-monitoring products. Also, trial product for which design guide was applied was produced to observe the pet behavior and identify problems while operating trial product. However, there was limit in securing data and study period to examine the satisfaction of various pets since the subject of this study was dog and it's required to conduct follow-up study by observing continuously and improving the problems in future to secure more data.

Development of a Robot Programming Instructional Model based on Cognitive Apprenticeship for the Enhancement of Metacognition (메타인지 발달을 위한 인지적 도제 기반의 로봇 프로그래밍 교수.학습 모형 개발)

  • Yeon, Hyejin;Jo, Miheon
    • Journal of The Korean Association of Information Education
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    • v.18 no.2
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    • pp.225-234
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    • 2014
  • Robot programming allows students to plan an algorithm in order to solve a task, implement the algorithm, easily confirm the results of the implementation with a robot, and correct errors. Thus, robot programming is a problem solving process based on reflective thinking, and is closely related to students' metacognition. On this point, this research is conducted to develop a robot programming instructional model for tile enhancement of students' metacognition. The instructional processes of robot programming are divided into 5 stages (i.e., 'exploration of learning tasks', 'a teacher's modeling', 'preparation of a plan for task performance along with the visualization of the plan', 'task performance', and 'self-evaluation and self-reinforcement'), and core strategies of metacognition (i.e., planning, monitering, regulating, and evaluating) are suggested for students' activities in each stage. Also, in order to support students' programming activities and the use of metacognition, instructional strategies based on cognitive apprenticeship (i.e. modeling, coaching and scaffolding) are suggested in relation to the instructional model. In addition, in order to support students' metacognitive activities. the model is designed to use self-questioning, and questions that students can use at each stage of the model are presented.

Development of Automatic Recognition and Spray Control System for Reducing the Amount of Marine Coating paint (선박용 피도물 도료 사용량 절감을 위한 인식 및 스프레이 자동제어시스템 개발)

  • Jung, Young-Deuk
    • Journal of the Korea Safety Management & Science
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    • v.21 no.3
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    • pp.23-27
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    • 2019
  • The first aim of the study is to improve the productivity by uniformizing the thickness of coating and reducing quality-inspection time. The second aim is to cut down on the raw materials for coating by prevent the waste of spraying in the air during a painting process through a real-time coating-size-recognition monitering to fit the target components. To achieve the two aims, a simplified version of automatic coating control system for recognition of coating for vessels and Spray. With the sytem, following effects are expected: First, quality improvement will be achieved by uniformizing the film-thickness. Second, it will reduce the waste of coating paint by constructing the speed of the coating, the spray gun robot transfer time, and the number of DBs according to the size of the vessel. Third, as a 3D industry, it will be able to solve the difficulty of supply of labors and save up the labor costs. Therefore, in the future, further research will be needed to be applied to various products with DB design that designates the variable value, which is added for each type of pieces by comparing the difference between various types of workpieces and linear ones.