Structured Innovation Tool Energy Systems Catapult

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Advanced Design Tools for Ocean Energy Systems Innovation,Development and DeploymentWebinar ETIP OceanStructured Innovation toolInès Tunga, Mo AbrahamsEnergy Systems Catapult06th April, 2020This project has received funding from the EuropeanUnion’s Horizon 2020 research and innovationprogramme under grant agreement No 785921

Contents1. Introduction of DTOceanPlus2. Innovation approaches3. DTOcean Structured Innovation design tool4. Summary & Next steps5. Reference materialPage 2

To support the entire technology innovationprocess, from concept to deployment. To propose advanced design tools for subsystems, energy capture devices and arrays. To bring tools to TRL6 by demonstrationscenarios in real world cases. To make freely available tools as open source tothe entire ocean energy sector. To develop an integrated suite of tools that will bea professional user-friendly product.Page 3 Colin Keldie1. DTOceanPlus: Motivation (I)

Page 4 Virtualys, adapted from The University of Edinburgh1. DTOceanPlus: Structure (II)

A 3-year EU project (May2018 - April 2021) with atotal budget of 8 M . Multidisciplinary team of16 partners from 7 EUcountries, with thecollaboration of 2 leadingresearch laboratories fromthe USA.Page 5 France Energies Marines, adapted from Freepik1. DTOceanPlus: Collaboration (III)

Common approaches Incremental or Sustainable Disruptive New Markets/ Open innovation Radical approachesPage 6 Courtesy of techblog.constantcontact.com2. Innovation approaches (I)

2. Innovation approaches (II)Automotive sector Design for Six Sigma Requirement capture & management Design Characterise Optimise Verify Enhanced customer integration tool QFD & DFMEA applicationCourtesy of Rolls RoycePage 7

2. Innovation approaches (III)Aerospace Incremental approach Disruptive innovation QFD & TRIZ approach System implementationPage 8

2. Innovation approach in the sector (IV)Energy Sector Wind sector Disruptive - Additive manufacturing GE- Novel electric drive systems Adoption of QFD & Cost analysis NREL, Sandia Lab- from intuitive invention WES Structured approachPage 9Courtesy of Sandia National Laboratories Ocean Energy Sector

2. Innovation approaches in the sector (V)DTOceanPlus-Motivation and objectives Lack of a standard structured innovative process for OceanEnergy technologies: Makes it difficult to impartially analyse innovative designs. Renders impossible to objectively compare competing technologies. Can lead to functional fixedness The Structured Innovation tool aims to: Provoke innovation and help represent the voice of the customerAllow the design to understand the art-of-the possible for concept targetsEnable objective comparisons between various technologies.Enhance systematic thinking for design beyond the current state-of-the-art.Create new or improve conceptsPage 10?

3. DTOcean Structured Innovation tool (I)DTOcean Structured Innovation riosRisk Assessment& onPage 11

3. DTOcean Structured Innovation tool (II)Who benefits from it? Technology developers to create/ assess areas ofimprovement and technical challenges Funders & Investors to identify attractive areasof innovation for investment Innovators & Developers to assess novelty intechnology at any level of aggregationPage 12

3. DTOcean Structured Innovation tool (III)Innovation at the heart of concept creation, usingQFD, TRIZ and FMEA Captures and prioritises requirements Assesses solutions for impact Provides problem solving for contradictions Encourages risk assessment and mitigation Gives development direction and impact Improve commercial acceptability** Freely available, user-friendly, Used at differentlevels of complexity and aggregationPage

3. DTOcean Structured Innovation tool (IV)Quality Function Deployment Concept selection methods Prioritise product requirementsGain insights into conflictsUnderstand relationships and impactAssess difficulty in engineering and deliveringImpact and organisational effortsPotential for IdealityPage 14

3. DTOcean Structured Innovation tool (V)Quality Function Deployment Strengths Multi level analysisMultiple solutions to NeedsSubjective and Objectives measuresImpact and Organisation Efforts Weaknesses No direct inventive thinking tool Functional fixednessPage 15

3. DTOcean Structured Innovation tool (VI)TRIZ- Theory of Inventive Problem Solving Library of problems & solutions Engineering field patents Evolution of technical systems Impact analysis (quality) Functional performance Vs conflicts State of idealityPage

3. DTOcean Structured Innovation tool (VII)Failure Modes and Effect Analysis (FMEA) Concept & design evaluation Possible causes & failures Risk Priority Number Threshold for mitigation Criteria for corrective actionsCourtesy of Soft ComplyPage 17

3. DTOcean Structured Innovation tool (VIII)Overall process of using DTOcean Page 18

3. DTOcean Structured Innovation tool (IX)Overall process of using DTOcean Page 19

3. DTOcean Structured Innovation tool (X)Overall process of using DTOcean Page 20

3. DTOcean Structured Innovation tool (XI)Define thestudyPage 21Inputobjectives andprioritiesInitiate SIProcessProvide KPIand assessIdealityReportpotentialconcepts

3. DTOcean Structured Innovation tool (XII)Define thestudyInputobjectives andprioritiesInitiate SIProcessProvide KPIand assessIdealityReportpotentialconceptsData sources: Custom input Existing QFD or FMEA analysis Solution hierarchyPage 22

3. DTOcean Structured Innovation tool (XIII)Define thestudyInputobjectives andprioritiesInitiate SIProcessProvide KPIand assessIdealityReportpotentialconceptsData sources: Custom input Existing QFD or FMEA analysis Metric thresholds Metric results Deployment parameters Fundamental relationships(Art of the possible)Page 23

3. DTOcean Structured Innovation tool (XIV)Define thestudyInputobjectives andprioritiesInitiate SIProcessProvide KPIand assessIdealityReportpotentialconceptsTRIZ is integrated into the QFDprocess, complementing the roof ofthe House of Quality in thetraditional process.Page 24

3. DTOcean Structured Innovation tool (XV)Define thestudyInputobjectives andprioritiesInitiate SIProcessProvide KPIand assessIdealityReportpotentialconceptsData sources: Custom input Stage Gate metrics Design modulesPage 25

3. DTOcean Structured Innovation tool (XVI)Define thestudyPage 26Inputobjectives andprioritiesInitiate SIProcessProvide KPIand assessIdealityReportpotentialconcepts

3. DTOcean Structured Innovation tool (XVII)DevelopmentFMEAPage 27QFD/TRIZ

4. Summary and next steps (I) Structured Innovation design tool aims to: Provoke innovation and help represent the voice of the customerAllow the design to understand the art-of-the possible for concept targetsEnable objective comparisons between various technologies.Enhance systematic thinking for design beyond the current state-of-the-art.Create new or improve concepts Benefits to stakeholders: Assess potential of technology Assess novelty in technology Target funding opportunities in sector Assess areas of improvement and technical challengesPage 28

4. Summary and next steps (II) The Structured Innovation design tool will beintegrated with the other DTOceanPlus designtools Stage Gate Tool Deployment Tools Assessment Tools and tested with data from real case technologyprojectsPage 29

4. Summary and next steps (III)Verification of standalone toolQFD/TRIZPage 30FMEASI tool

4. Summary and next steps (IV)Validation of the integrated toolTo satisfy the use cases of:TechnologydevelopersPublic andprivateinvestorsCreate new/improvedevice conceptIdentifying enablingtechnologies required(gap analysis)Identify attractive areasof innovation forinvestmentIdentifying potentialareas of opportunityPage 31

5. Reference materialDeliverable D3.1 - TECHNICAL REQUIREMENTS FOR THEIMPLEMENTATION OF STRUCTURED INNOVATION INOCEAN ENERGY SYSTEMSDeliverable D3.2- Structured Innovation design tool alphaversion (Due 30th April 2020)Dissemination:DateSept. 2020More on the sPage 32EventAllEnergy 2020, Glasgow (TBC)Oct. 2020RENEW 2020 Lisbon, PortugalDec. 2020OEE 2020 Brussels, Belgium

Advanced Design Tools for Ocean Energy Systems Innovation,Development and DeploymentThank you for your attention!Inès Tunga – ines.tunga@es.catapult.org.ukMo Abrahams – mo.Abrahams@es.catapult.org.ukDisclaimer: This presentation reflects only the author’s views and the Agency is notresponsible for any use that may be made of the information contained therein.This project has received funding from the EuropeanUnion’s Horizon 2020 research and innovationprogramme under grant agreement No 785921

Energy Systems Catapult 06th April, 2020 Webinar ETIP Ocean Structured Innovation tool . Energy Systems Catapult. Page . . A 3-year EU project (May 2018 - April 2021) with a . Design for

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