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2015 | OriginalPaper | Chapter

16. Product Lifecycle Management

Authors : Lutz Lämmer, Mirko Theiss

Published in: Concurrent Engineering in the 21st Century

Publisher: Springer International Publishing

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Abstract

Product lifecycle management (PLM) is widely understood as concept for the creation, storage, and retrieval of data, information and, ideally, knowledge throughout the lifecycle of a product from its conceptualization or inception to its disposal or recovery. PLM is seen in industry as one of the core concepts to fulfill a number of business requirements in the manufacturing industry with respect to completeness, high transparency, rapid accessibility, and high visibility of all product data during a product’s lifecycle. Those requirements are related to financial aspects such as cost management and revenue growth; to the product itself like innovation, time to market, quality, and high productivity; and to regulatory aspects such as compliance and documentation. PLM is implemented by deploying IT systems such as product data management (PDM) systems and induces a high level of interoperability of related applications. With PLM, industrial companies attempt to gain advantages in shorter cycles, lower costs, better quality by avoiding errors, and misunderstanding. After reviewing basic concepts and building blocks of PLM, we provide empirical evidence of implementation scenarios and use case studies for different integrations to build up PLM solutions. We have evaluated applications in automotive, aerospace and consumer electronic industries focused on engineering design, change management, simulation data management integration and communication with partners. Emphasis is on the organizational and IT implications and the business benefit of the provided solutions.

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Literature
1.
go back to reference Eigner M, Stelzer R (2009) Product lifecycle management. Springer, Dordrecht, Heidelberg, London, New YorkCrossRef Eigner M, Stelzer R (2009) Product lifecycle management. Springer, Dordrecht, Heidelberg, London, New YorkCrossRef
2.
go back to reference Abramovici M, Schulte S, Leszinski C (2005) Best practice strategien für die einführung von product lifecycle management. Ind Manage 21(2):47–50 Abramovici M, Schulte S, Leszinski C (2005) Best practice strategien für die einführung von product lifecycle management. Ind Manage 21(2):47–50
3.
go back to reference Tavcar J, Potocnik U, Duhovnik J (2013) PLM used as a backbone for concurrent engineering in supply chain. In: Stjepandic J, Rock G, Bil C (eds) Concurrent engineering approaches for sustainable product development in a multi-disciplinary environment. Springer, London, pp 681–692CrossRef Tavcar J, Potocnik U, Duhovnik J (2013) PLM used as a backbone for concurrent engineering in supply chain. In: Stjepandic J, Rock G, Bil C (eds) Concurrent engineering approaches for sustainable product development in a multi-disciplinary environment. Springer, London, pp 681–692CrossRef
4.
go back to reference Katzenbach A, Steiert H (2011) Engineering IT in der Automobilindustrie—Wege in die Zukunft. Informatik-Spektrum 34(1):7–19CrossRef Katzenbach A, Steiert H (2011) Engineering IT in der Automobilindustrie—Wege in die Zukunft. Informatik-Spektrum 34(1):7–19CrossRef
5.
go back to reference Silcher S, Seeberg B, Zahn E, Mitschang B (2013) A holistic management model for manufacturing companies and related IT support. Proc CIRP 7:175–180CrossRef Silcher S, Seeberg B, Zahn E, Mitschang B (2013) A holistic management model for manufacturing companies and related IT support. Proc CIRP 7:175–180CrossRef
6.
go back to reference Schuh G (2006) Produktionsplanung und -steuerung: Grundlagen, Gestaltung und Konzepte. Springer, Berlin, HeidelbergCrossRef Schuh G (2006) Produktionsplanung und -steuerung: Grundlagen, Gestaltung und Konzepte. Springer, Berlin, HeidelbergCrossRef
7.
go back to reference Vajna S, Weber C, Bley H, Zeman K (2009) Integrated design engineering. Springer, Berlin Vajna S, Weber C, Bley H, Zeman K (2009) Integrated design engineering. Springer, Berlin
9.
go back to reference Dekkers R, Chang C, Kreutzfeldt J (2013) The interface between ‘‘product design and engineering’’ and manufacturing: a review of the literature and empirical evidence. Int J Prod Econ 144:316–333CrossRef Dekkers R, Chang C, Kreutzfeldt J (2013) The interface between ‘‘product design and engineering’’ and manufacturing: a review of the literature and empirical evidence. Int J Prod Econ 144:316–333CrossRef
10.
go back to reference Abramovici M, Bellalouna F, Neubach M (2010) Delphi-Studie PLM 2020. Ind Manage 26(3):47–50 Abramovici M, Bellalouna F, Neubach M (2010) Delphi-Studie PLM 2020. Ind Manage 26(3):47–50
11.
go back to reference Abramovici M, Bellalouna F, Flohr M (2008) PLM für individuelle reale Produkte. Ind Manage 24(3):41–44 Abramovici M, Bellalouna F, Flohr M (2008) PLM für individuelle reale Produkte. Ind Manage 24(3):41–44
12.
go back to reference Sendler U (2009) Das PLM-Kompendium: Referenzbuch des Produkt-Lebenszyklus-Managements. Springer, Berlin, HeidelbergCrossRef Sendler U (2009) Das PLM-Kompendium: Referenzbuch des Produkt-Lebenszyklus-Managements. Springer, Berlin, HeidelbergCrossRef
13.
go back to reference Schuh G, Assmus D, Zancul E (2006) Product structuring—the core discipline of product lifecycle management. In: 13th CIRP international conference on lifecycle engineering, pp 393–398 Schuh G, Assmus D, Zancul E (2006) Product structuring—the core discipline of product lifecycle management. In: 13th CIRP international conference on lifecycle engineering, pp 393–398
14.
go back to reference Mechlinski T (2007) Aktuelle Konzepte für die PDM-Integration. Produkt Daten Journal 14(1):34–37 Mechlinski T (2007) Aktuelle Konzepte für die PDM-Integration. Produkt Daten Journal 14(1):34–37
15.
go back to reference Stiefel P (2010) Eine dezentrale Informations- und Kollaborationsarchitektur für die unternehmensübergreifende Produktentwicklung. PhD thesis, Technische Universität Clausthal, Clausthal-Zellerfeld Stiefel P (2010) Eine dezentrale Informations- und Kollaborationsarchitektur für die unternehmensübergreifende Produktentwicklung. PhD thesis, Technische Universität Clausthal, Clausthal-Zellerfeld
16.
go back to reference Grau M, Trautmann T (2007) Vendor-independent integration of CAD and CAE processes based on OMG PLM Services. NAFEMS 2006 Grau M, Trautmann T (2007) Vendor-independent integration of CAD and CAE processes based on OMG PLM Services. NAFEMS 2006
20.
go back to reference Credle R (2008) SOA approach to enterprise integration for product lifecycle management. IBM, International Technical Support Organization, Raleigh Credle R (2008) SOA approach to enterprise integration for product lifecycle management. IBM, International Technical Support Organization, Raleigh
23.
go back to reference ISO (2003) STEP 10303:214 core data for automotive mechanical design processes ISO (2003) STEP 10303:214 core data for automotive mechanical design processes
24.
go back to reference ISO (2012) 14306: Industrial automation systems and integration—JT file format specification for 3D visualization ISO (2012) 14306: Industrial automation systems and integration—JT file format specification for 3D visualization
25.
go back to reference Mas F, Menendez J, Oliva M, Rios J (2013) Collaborative engineering: an airbus case study. In: The manufacturing engineering society international conference, MESIC. Elsevier, pp 336–345 Mas F, Menendez J, Oliva M, Rios J (2013) Collaborative engineering: an airbus case study. In: The manufacturing engineering society international conference, MESIC. Elsevier, pp 336–345
Metadata
Title
Product Lifecycle Management
Authors
Lutz Lämmer
Mirko Theiss
Copyright Year
2015
DOI
https://doi.org/10.1007/978-3-319-13776-6_16

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