Application of camera controlled laser projection systems for manual mounting tasks

Publikation: Beiträge in SammelwerkenAbstracts in KonferenzbändenForschungbegutachtet

Standard

Application of camera controlled laser projection systems for manual mounting tasks. / Taubert, Jan; Rehe, Michael; Müller-Polyzou, Ralf.

Dritte Transdisziplinäre Konferenz "Technische Unterstützungssysteme, die die Menschen wirklich wollen". Hrsg. / Robert Weidner; Athanasios Karafillidis. Hamburg : Helmut-Schmidt-Universität, 2018. S. 67-76.

Publikation: Beiträge in SammelwerkenAbstracts in KonferenzbändenForschungbegutachtet

Harvard

Taubert, J, Rehe, M & Müller-Polyzou, R 2018, Application of camera controlled laser projection systems for manual mounting tasks. in R Weidner & A Karafillidis (Hrsg.), Dritte Transdisziplinäre Konferenz "Technische Unterstützungssysteme, die die Menschen wirklich wollen". Helmut-Schmidt-Universität, Hamburg, S. 67-76, 3. transdisziplinäre Konferenz „Technische Unterstützungssysteme, die die Menschen wirklich wollen“ - TCST 2018, Hamburg, Deutschland, 11.12.18. <http://www.humanhybridrobot.info/wp-content/uploads/2015/01/TCST-2018-Konferenzband-Technische-Unterstu%CC%88tzungssysteme-die-die-Menschen-wirklich-wollen_komprimiert.pdf>

APA

Taubert, J., Rehe, M., & Müller-Polyzou, R. (2018). Application of camera controlled laser projection systems for manual mounting tasks. in R. Weidner, & A. Karafillidis (Hrsg.), Dritte Transdisziplinäre Konferenz "Technische Unterstützungssysteme, die die Menschen wirklich wollen" (S. 67-76). Helmut-Schmidt-Universität. http://www.humanhybridrobot.info/wp-content/uploads/2015/01/TCST-2018-Konferenzband-Technische-Unterstu%CC%88tzungssysteme-die-die-Menschen-wirklich-wollen_komprimiert.pdf

Vancouver

Taubert J, Rehe M, Müller-Polyzou R. Application of camera controlled laser projection systems for manual mounting tasks. in Weidner R, Karafillidis A, Hrsg., Dritte Transdisziplinäre Konferenz "Technische Unterstützungssysteme, die die Menschen wirklich wollen". Hamburg: Helmut-Schmidt-Universität. 2018. S. 67-76

Bibtex

@inbook{520fee918d7d4e558aa3ae2123ab7bef,
title = "Application of camera controlled laser projection systems for manual mounting tasks",
abstract = "This article presents an approach of an assistance system for manual mounting tasks. For this, the three main requirements usability, flexibility and reliability are identified. A mounting assistance system is implemented in a test scenario, with consideration to the previously established requirements. It consists of an industrial laser guidance system that is controlled by a software using machine learning based image recognition. The software determines the status of the actual mounting progress and the location of product components. It controls the laser projection system, thus eliminating the need for any user interaction. Additional instructions are projected onto the work surface to increase the system usability. The results of a structural user test evaluating the mounting efficiency, effectiveness and perceived usability are presented. Finally, the article gives an outlook to further developments.",
keywords = "Engineering",
author = "Jan Taubert and Michael Rehe and Ralf M{\"u}ller-Polyzou",
year = "2018",
language = "English",
isbn = "978-3-86818-245-3",
pages = "67--76",
editor = "Robert Weidner and Athanasios Karafillidis",
booktitle = "Dritte Transdisziplin{\"a}re Konferenz {"}Technische Unterst{\"u}tzungssysteme, die die Menschen wirklich wollen{"}",
publisher = "Helmut-Schmidt-Universit{\"a}t",
address = "Germany",
note = "null ; Conference date: 11-12-2018 Through 12-12-2018",
url = "http://www.humanhybridrobot.info/wp-content/uploads/2018/10/Programmheft-TSCT-Stand-November-2018.pdf",

}

RIS

TY - CHAP

T1 - Application of camera controlled laser projection systems for manual mounting tasks

AU - Taubert, Jan

AU - Rehe, Michael

AU - Müller-Polyzou, Ralf

PY - 2018

Y1 - 2018

N2 - This article presents an approach of an assistance system for manual mounting tasks. For this, the three main requirements usability, flexibility and reliability are identified. A mounting assistance system is implemented in a test scenario, with consideration to the previously established requirements. It consists of an industrial laser guidance system that is controlled by a software using machine learning based image recognition. The software determines the status of the actual mounting progress and the location of product components. It controls the laser projection system, thus eliminating the need for any user interaction. Additional instructions are projected onto the work surface to increase the system usability. The results of a structural user test evaluating the mounting efficiency, effectiveness and perceived usability are presented. Finally, the article gives an outlook to further developments.

AB - This article presents an approach of an assistance system for manual mounting tasks. For this, the three main requirements usability, flexibility and reliability are identified. A mounting assistance system is implemented in a test scenario, with consideration to the previously established requirements. It consists of an industrial laser guidance system that is controlled by a software using machine learning based image recognition. The software determines the status of the actual mounting progress and the location of product components. It controls the laser projection system, thus eliminating the need for any user interaction. Additional instructions are projected onto the work surface to increase the system usability. The results of a structural user test evaluating the mounting efficiency, effectiveness and perceived usability are presented. Finally, the article gives an outlook to further developments.

KW - Engineering

M3 - Published abstract in conference proceedings

SN - 978-3-86818-245-3

SN - 978-3-86818-246-0

SP - 67

EP - 76

BT - Dritte Transdisziplinäre Konferenz "Technische Unterstützungssysteme, die die Menschen wirklich wollen"

A2 - Weidner, Robert

A2 - Karafillidis, Athanasios

PB - Helmut-Schmidt-Universität

CY - Hamburg

Y2 - 11 December 2018 through 12 December 2018

ER -

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