Adaptive instructions to novice shop-floor operators using Augmented Reality

被引:30
作者
Holm M. [1 ]
Danielsson O. [1 ]
Syberfeldt A. [1 ]
Moore P. [1 ]
Wang L. [2 ]
机构
[1] School of Engineering Science, University of Skövde, Skövde
[2] Sustainable Manufacturing, KTH Royal Institute of Technology, Stockholm
来源
Holm, Magnus (magnus.holm@his.se) | 1600年 / Taylor and Francis Ltd.卷 / 34期
基金
欧盟地平线“2020”;
关键词
Adaptive instructions; Augmented Reality; expert systems; shop-floor operators; shop-floor support;
D O I
10.1080/21681015.2017.1320592
中图分类号
学科分类号
摘要
This paper presents a novel system using Augmented Reality and Expert Systems to enhance the quality and efficiency of shop-floor operators. The novel system proposed provides an adaptive tool that facilitates and enhances support on the shop-floor, due to its ability to dynamically customize the instructions displayed, dependent upon the competence of the user. A comparative study has been made between an existing method of quality control instructions at a machining line in an automotive engine plant and this novel system. It has been shown that the new approach outcompetes the existing system, not only in terms of perceived usability but also with respect to two other important shop-floor variables: quality and productivity. Along with previous research, the outcomes of these test cases indicate the value of using Augmented Reality technology to enhance shop-floor operators’ ability to learn and master new tasks. © 2017 Chinese Institute of Industrial Engineers.
引用
收藏
页码:362 / 374
页数:12
相关论文
共 44 条
  • [21] Nazri N.I.A.M., Rambli D.R.A., Current limitations and opportunities in mobile augmented reality applications, (2014)
  • [22] Vilacoba D., Vi A., Weber P., Press dedicated machine show-room, a direct application of augmented reality in industry. An industrial augmented reality experience, 2016 IEEE International Conference on Industrial Technology (ICIT), (2016)
  • [23] Liao S.-H., Expert system methodologies and applications–a decade review from 1995 to 2004, Expert Syst Appl, 28, 1, pp. 93-103, (2005)
  • [24] Tasso C., Guida G., Topics in expert system design: methodologies and tools, 5, (2014)
  • [25] Patel M., Virparia P., Patel D., Web based fuzzy expert system and its applications–a survey, Int J Appl Inf Syst, 1, 7, pp. 11-15, (2012)
  • [26] Olugu E.U., Wong K.Y., An expert fuzzy rule-based system for closed-loop supply chain performance assessment in the automotive industry, Expert Syst Appl, 39, 1, pp. 375-384, (2012)
  • [27] Huang J.M., Chai M.J., Zhang R.Y., Fault diagnosis expert system applied on machinery industry, (2013)
  • [28] Laureano-Cruces A.L., AntuA+/-ano-Barranco J.M.A., Sarmiento-Bustos E., An expert system to improve the functioning of the clothing industry, Int J Clothing Sci Technol, 27, 1, pp. 99-128, (2015)
  • [29] Prasad K., Chakraborty S., Development of a QFD-based expert system for CNC turning centre selection, J Ind Eng Int, 11, 4, pp. 575-594, (2015)
  • [30] Hajovy H., Christensen D.L., Intelligent computer-assisted instruction: the next generation, (1990)