Sujing Song, Hojun Kang, H. Kim, Taenam Moon, Do Hyoung Shin
{"title":"Task-Visual Information Map to Develop AR Navigators of Construction Equipment","authors":"Sujing Song, Hojun Kang, H. Kim, Taenam Moon, Do Hyoung Shin","doi":"10.6106/KJCEM.2016.17.3.116","DOIUrl":null,"url":null,"abstract":": Work efficiency of earth work which is one of the main works occurring in construction site mainly depends on the performance of individual operators of earth work equipment. Consequently, the skill of individual operators of earth work equipment can significantly affect overall construction schedules. Many invisible areas inevitably exist in construction site because of the nature of construction site where occlusions occur from structures being built, installed or moving equipment, moving workers, etc. The lack of visual information regarding tasks critically impedes the effective performance of operators of earth work equipment. AR (Augmented Reality) is a computer technology that superimposes virtual objects onto the real world scene. This characteristic of AR may address the lack of visual informations in earth work process, thus helping to improve the work efficiency of operators of earth work equipment. The purpose of this study is to present a task-visual information map that identifies visual informations required in tasks of earth work and which of the tasks are suitable for AR technology. This study focuses on visual informations in tasks of earth work with excavators. The map was created based on the investigations on the problems of each task of earth work with excavators and visual informations required to address the problems. Through the map, four visual informations were found to be suitable for AR technology to improve the work efficiency of excavator operators. Based on the findings of this study, AR systems for excavators can be developed more effectively.","PeriodicalId":220018,"journal":{"name":"Korean Journal of Construction Engineering and Management","volume":"126 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2016-05-31","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Korean Journal of Construction Engineering and Management","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.6106/KJCEM.2016.17.3.116","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 2
Abstract
: Work efficiency of earth work which is one of the main works occurring in construction site mainly depends on the performance of individual operators of earth work equipment. Consequently, the skill of individual operators of earth work equipment can significantly affect overall construction schedules. Many invisible areas inevitably exist in construction site because of the nature of construction site where occlusions occur from structures being built, installed or moving equipment, moving workers, etc. The lack of visual information regarding tasks critically impedes the effective performance of operators of earth work equipment. AR (Augmented Reality) is a computer technology that superimposes virtual objects onto the real world scene. This characteristic of AR may address the lack of visual informations in earth work process, thus helping to improve the work efficiency of operators of earth work equipment. The purpose of this study is to present a task-visual information map that identifies visual informations required in tasks of earth work and which of the tasks are suitable for AR technology. This study focuses on visual informations in tasks of earth work with excavators. The map was created based on the investigations on the problems of each task of earth work with excavators and visual informations required to address the problems. Through the map, four visual informations were found to be suitable for AR technology to improve the work efficiency of excavator operators. Based on the findings of this study, AR systems for excavators can be developed more effectively.
:土方工程是建筑工地的主要工程之一,其工作效率主要取决于土方工程设备操作员的个人表现。因此,土方设备操作员的技能会对整个施工进度产生重大影响。由于建筑工地的性质,施工现场不可避免地存在许多不可见区域,如正在建造的结构、安装或移动的设备、移动的工人等。缺乏有关任务的视觉信息严重影响了土方工程设备操作员的工作效率。增强现实(AR)是一种将虚拟物体叠加到现实世界场景中的计算机技术。增强现实技术的这一特点可以解决土方作业过程中缺乏视觉信息的问题,从而有助于提高土方作业设备操作员的工作效率。本研究的目的是提出一个任务-视觉信息图,以确定土方作业任务中所需的视觉信息,以及哪些任务适合采用 AR 技术。本研究重点关注使用挖掘机进行土方工程时的视觉信息。该地图是在对使用挖掘机进行土方作业的各项任务中存在的问题以及解决这些问题所需的视觉信息进行调查的基础上绘制的。通过该地图,发现四种视觉信息适合采用 AR 技术来提高挖掘机操作员的工作效率。根据这项研究的结果,可以更有效地开发用于挖掘机的 AR 系统。