Understanding and Supporting Product-Service System Designing : Preliminary Insights and Support for Designing Resource-Efficient and Effective Solutions

This licentiate thesis aims to establish the basis for scientifically understanding and supporting the cognitive processes involved in the conceptual design of resource- efficient and effective product-service systems (PSSs). The research carried out is transdisciplinary in nature and includes both...

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Main Author: Neramballi, Abhijna
Format: Others
Language:English
Published: Linköpings universitet, Industriell miljöteknik 2020
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-164948
http://nbn-resolving.de/urn:isbn:9789179298517
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spelling ndltd-UPSALLA1-oai-DiVA.org-liu-1649482020-09-29T05:26:18ZUnderstanding and Supporting Product-Service System Designing : Preliminary Insights and Support for Designing Resource-Efficient and Effective SolutionsengNeramballi, AbhijnaLinköpings universitet, Industriell miljöteknikLinköpings universitet, Tekniska fakultetenLinköping2020DesignDesignInteraction TechnologiesInteraktionsteknikThis licentiate thesis aims to establish the basis for scientifically understanding and supporting the cognitive processes involved in the conceptual design of resource- efficient and effective product-service systems (PSSs). The research carried out is transdisciplinary in nature and includes both prescriptive and descriptive studies. First, the cognitive nature of conceptual PSS designing is investigated. Multiple pre-experimental protocol studies in a laboratory setting are carried out to do so. The cohort of these explorative studies includes experienced industrial practitioners conceptually designing a resource-efficient PSS. These descriptive studies provide quantitative insights into the cognitive effort expended by designers on various design issues and processes during conceptual PSS designing and its potential differences to conceptual product designing. These insights form the basis for future research that can eventually shine light on this complex process with statistically significant empirical results. Second, the essence of extant prescriptive PSS design principles, methods and tools is distilled through a literature analysis and synthesis of the state of the art. Subsequently, important aspects that need to be considered during conceptual PSS designing are consolidated in the form of a PSS design schema. Third, a design navigator named lifecycle-oriented function deployment (LFD) is developed. LFD is essentially a contextual decision-making support tool, developed to guide the conceptual designing of environmentally benign PSSs. This tool informs the designers regarding the potential environmental impacts of specific design parameters of an existing offering. It subsequently guides the designers in the redesign of this existing offering into a PSS with relatively benign environmental impacts. Fourth, the effects of the two proposed prescriptions are tested empirically. True experimental protocol studies are carried out in a laboratory setting to test the effects of the prescriptive PSS design schema on the cognition of PSS designers. LFD is applied in an industrial case study using the action design research method, to support the conceptual redesign of an existing product-centric offering into an environmentally benign PSS. Environmental impacts of the PSS concepts generated using LFD are then evaluated in comparison to that of the existing offering, using simulated lifecycle assessment. A semi-structured interview is carried out to evaluate the utility and usability of LFD, with the company personnel involved in the conceptual redesign process. This licentiate thesis is an effort to effectively design the future research work of the author. This future work will aim to support and establish generalizable scientific knowledge regarding the conceptual designing of resource-efficient and effective PSSs. <p>Forskningsfinansiär: Mistra REES (Resource Efficient and EffectiveSolutions) program funded by Mistra (The Swedish Foundation for StrategicEnvironmental Research) (grant number DIA 2014/16).</p>Licentiate thesis, comprehensive summaryinfo:eu-repo/semantics/masterThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-164948urn:isbn:9789179298517doi:10.3384/lic.diva-164948Linköping Studies in Science and Technology. Licentiate Thesis, 0280-7971 ; 1877application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic Design
Design
Interaction Technologies
Interaktionsteknik
spellingShingle Design
Design
Interaction Technologies
Interaktionsteknik
Neramballi, Abhijna
Understanding and Supporting Product-Service System Designing : Preliminary Insights and Support for Designing Resource-Efficient and Effective Solutions
description This licentiate thesis aims to establish the basis for scientifically understanding and supporting the cognitive processes involved in the conceptual design of resource- efficient and effective product-service systems (PSSs). The research carried out is transdisciplinary in nature and includes both prescriptive and descriptive studies. First, the cognitive nature of conceptual PSS designing is investigated. Multiple pre-experimental protocol studies in a laboratory setting are carried out to do so. The cohort of these explorative studies includes experienced industrial practitioners conceptually designing a resource-efficient PSS. These descriptive studies provide quantitative insights into the cognitive effort expended by designers on various design issues and processes during conceptual PSS designing and its potential differences to conceptual product designing. These insights form the basis for future research that can eventually shine light on this complex process with statistically significant empirical results. Second, the essence of extant prescriptive PSS design principles, methods and tools is distilled through a literature analysis and synthesis of the state of the art. Subsequently, important aspects that need to be considered during conceptual PSS designing are consolidated in the form of a PSS design schema. Third, a design navigator named lifecycle-oriented function deployment (LFD) is developed. LFD is essentially a contextual decision-making support tool, developed to guide the conceptual designing of environmentally benign PSSs. This tool informs the designers regarding the potential environmental impacts of specific design parameters of an existing offering. It subsequently guides the designers in the redesign of this existing offering into a PSS with relatively benign environmental impacts. Fourth, the effects of the two proposed prescriptions are tested empirically. True experimental protocol studies are carried out in a laboratory setting to test the effects of the prescriptive PSS design schema on the cognition of PSS designers. LFD is applied in an industrial case study using the action design research method, to support the conceptual redesign of an existing product-centric offering into an environmentally benign PSS. Environmental impacts of the PSS concepts generated using LFD are then evaluated in comparison to that of the existing offering, using simulated lifecycle assessment. A semi-structured interview is carried out to evaluate the utility and usability of LFD, with the company personnel involved in the conceptual redesign process. This licentiate thesis is an effort to effectively design the future research work of the author. This future work will aim to support and establish generalizable scientific knowledge regarding the conceptual designing of resource-efficient and effective PSSs. === <p>Forskningsfinansiär: Mistra REES (Resource Efficient and EffectiveSolutions) program funded by Mistra (The Swedish Foundation for StrategicEnvironmental Research) (grant number DIA 2014/16).</p>
author Neramballi, Abhijna
author_facet Neramballi, Abhijna
author_sort Neramballi, Abhijna
title Understanding and Supporting Product-Service System Designing : Preliminary Insights and Support for Designing Resource-Efficient and Effective Solutions
title_short Understanding and Supporting Product-Service System Designing : Preliminary Insights and Support for Designing Resource-Efficient and Effective Solutions
title_full Understanding and Supporting Product-Service System Designing : Preliminary Insights and Support for Designing Resource-Efficient and Effective Solutions
title_fullStr Understanding and Supporting Product-Service System Designing : Preliminary Insights and Support for Designing Resource-Efficient and Effective Solutions
title_full_unstemmed Understanding and Supporting Product-Service System Designing : Preliminary Insights and Support for Designing Resource-Efficient and Effective Solutions
title_sort understanding and supporting product-service system designing : preliminary insights and support for designing resource-efficient and effective solutions
publisher Linköpings universitet, Industriell miljöteknik
publishDate 2020
url http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-164948
http://nbn-resolving.de/urn:isbn:9789179298517
work_keys_str_mv AT neramballiabhijna understandingandsupportingproductservicesystemdesigningpreliminaryinsightsandsupportfordesigningresourceefficientandeffectivesolutions
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