Literature DB >> 29170612

Visual Analytics Tools for Sustainable Lifecycle Design: Current Status, Challenges, and Future Opportunities.

Devarajan Ramanujan1, William Z Bernstein2, Senthil K Chandrasegaran3, Karthik Ramani4.   

Abstract

The rapid rise in technologies for data collection has created an unmatched opportunity to advance the use of data-rich tools for lifecycle decision-making. However, the usefulness of these technologies is limited by the ability to translate lifecycle data into actionable insights for human decision-makers. This is especially true in the case of sustainable lifecycle design (SLD), as the assessment of environmental impacts, and the feasibility of making corresponding design changes, often relies on human expertise and intuition. Supporting human sense-making in SLD requires the use of both data-driven and user-driven methods while exploring lifecycle data. A promising approach for combining the two is through the use of visual analytics (VA) tools. Such tools can leverage the ability of computer-based tools to gather, process, and summarize data along with the ability of human-experts to guide analyses through domain knowledge or data-driven insight. In this paper, we review previous research that has created VA tools in SLD. We also highlight existing challenges and future opportunities for such tools in different lifecycle stages-design, manufacturing, distribution & supply chain, use-phase, end-of-life, as well as life cycle assessment. Our review shows that while the number of VA tools in SLD is relatively small, researchers are increasingly focusing on the subject matter. Our review also suggests that VA tools can address existing challenges in SLD and that significant future opportunities exist.

Entities:  

Year:  2017        PMID: 29170612      PMCID: PMC5695691          DOI: 10.1115/1.4037479

Source DB:  PubMed          Journal:  J Mech Des N Y        ISSN: 1050-0472            Impact factor:   3.251


  9 in total

1.  Visual Data Analysis as an Integral Part of Environmental Management.

Authors:  J Meyer; E W Bethel; J L Horsman; S S Hubbard; H Krishnan; A Romosan; E H Keating; L Monroe; R Strelitz; P Moore; G Taylor; B Torkian; T C Johnson; I Gorton
Journal:  IEEE Trans Vis Comput Graph       Date:  2012-12       Impact factor: 4.579

2.  LiveGantt: Interactively Visualizing a Large Manufacturing Schedule.

Authors:  Jaemin Jo; Jaeseok Huh; Jonghun Park; Bohyoung Kim; Jinwook Seo
Journal:  IEEE Trans Vis Comput Graph       Date:  2014-12       Impact factor: 4.579

3.  The OBO Foundry: coordinated evolution of ontologies to support biomedical data integration.

Authors:  Barry Smith; Michael Ashburner; Cornelius Rosse; Jonathan Bard; William Bug; Werner Ceusters; Louis J Goldberg; Karen Eilbeck; Amelia Ireland; Christopher J Mungall; Neocles Leontis; Philippe Rocca-Serra; Alan Ruttenberg; Susanna-Assunta Sansone; Richard H Scheuermann; Nigam Shah; Patricia L Whetzel; Suzanna Lewis
Journal:  Nat Biotechnol       Date:  2007-11       Impact factor: 54.908

4.  Perspectives on artificial intelligence programming.

Authors:  D G Bobrow; M J Stefik
Journal:  Science       Date:  1986-02-28       Impact factor: 47.728

5.  Visual analytics for early-phase complex engineered system design support.

Authors:  Rahul C Basole; Ahsan Qamar; Hyunwoo Park; Christiaan J J Paredis; Leon F McGinnis
Journal:  IEEE Comput Graph Appl       Date:  2015-01-12       Impact factor: 2.088

6.  Visual computing as a key enabling technology for Industrie 4.0 and Industrial Internet.

Authors:  Jorge Posada; Carlos Toro; Iñigo Barandiaran; David Oyarzun; Didier Stricker; Raffaele de Amicis; Eduardo B Pinto; Peter Eisert; Jurgen Döllner; Ivan Vallarino
Journal:  IEEE Comput Graph Appl       Date:  2015 Mar-Apr       Impact factor: 2.088

7.  ViDX: Visual Diagnostics of Assembly Line Performance in Smart Factories.

Authors:  Panpan Xu; Honghui Mei; Liu Ren; Wei Chen
Journal:  IEEE Trans Vis Comput Graph       Date:  2017-01       Impact factor: 4.579

Review 8.  Emerging approaches, challenges and opportunities in life cycle assessment.

Authors:  Stefanie Hellweg; Llorenç Milà i Canals
Journal:  Science       Date:  2014-06-06       Impact factor: 47.728

9.  Enabling Smart Manufacturing Research and Development using a Product Lifecycle Test Bed.

Authors:  Moneer Helu; Thomas Hedberg
Journal:  Procedia Manuf       Date:  2015-10-21
  9 in total

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