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Presentation for AFIS
Bertrand GOURET – ENOVIA Sales Director
Gauthier FANMUY - Systems Engineering User Experience Director
13 Fevrier 2014
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Objectives
Share the PLM evolution from PDM to Business Platform
Share the different roles implied in the PLM Platform
Explanation of each Subdomains by Roles/ department in the enterprise
Share the vision of the integration of System engineering activities inside these
PLM Platform
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2014 What does it mean : Business Platform versus PDM ?
Main roles in the Main area « Global Product Development » : Engineering and Manufacturing
How is seen the integration of System engineering with New Generation PLM
Example of this integration
Agenda
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Our Legacy
3DDesign
3D DMUDigital Mock-up
3D PLMProduct Lifecycle
Management
7
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3DEXPERIENCE Powers our Brand Applications for 12 Industries
Industry Solution ExperiencesBrand Applications
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What is the 3DEXPERIENCE Platform?
To enable our clients to create
delightful EXPERIENCES
for their ultimate
customers or consumers
It’s a Business Experience Platform
available On Premise and
in public or private cloud
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3DEXPERIENCE Key Values for Customers
Unified user experienceAcross all Process & Industries
Social collaborationFor social innovation
Extension to any DisciplineEngineering, Manufacturing, Sales, Marketing,
Procurement, Finance
Business DashboardingAggregate multiple data sources
Designed for CloudFast deployment to SMBs and new industries
On-cloud
Packaged by ProcessesBuilt from customer needs per industry
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The IFWE Compass User Experience.Available for all applications from CATIA, DELMIA, ENOVIA, and SIMULIA
My Apps 3DSearch and 6WTag Me Menu New Menu Share Menu Home Menu
Login
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A new Offering beyond PLM
Manufacturing
Sales & Support
Experience Consumers Journey
Experience
Upstream Experience
thinking
Design & Engineering
Simulation
to connect the dots of our clients and their ecosystem
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2012 Product Planning & Programs
ENOVIA/3DEXPERIENCE Governance & ReleaseENOVIA/3DEXPERIENCE Governance & Release
Strategic Customer
Relationships
Strategic Supplier
Relationships
Global Product DevelopmentConfiguration Management
Cost Management
Global Design
Management
Global Engineering Management
Global Manufacturing Management
GlobalProduct
Support Mgt
Quality and Compliance
IP Classification & Security
Target ZERO BOM Errors
Target ZERO Rework
Target ZERO Exceptions
Target ZERO Prototypes
Target ZEROLatency
Target ZERO Delays
Target ZEROProduct Failures
13
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ENOVIA Business ThemesProduct Planning & Programs
Strategic Customer
Relationships
Global Product Development Strategic Supplier
Relationships
Quality and Compliance
IP Classification & Security
Global Design Management Global Eng/Mfg/Service Mgt
= enterprise process = design/engr process
14
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ENOVIA Business ThemesProduct Planning & Programs
Strategic Customer Relationships
Global Product Development Strategic Supplier Relationships
Quality and Compliance
IP Classification & Security
• Schedule and track product development deliverables
• Optimize utilization of precious staffing
• Capture the voice of the
customer
• Define and implement a
platform strategy for the optimal
mix of products and services
• Construct winning proposals or
market launches
• Benefit from a systems-based, multi-disciplinary process
• Concurrently perform simulation and virtual manufacturing
to validate designs
• Aggregate all multi-discipline design IP into a single product
record for the enterprise
• Coordinate changes between engineering, operations, and
service
• Leverage and align supplier
expertise during development
• Pursue supply chain readiness
with processes to assess supplier
quality and capabilities
• Deliver real time regulatory compliance and mitigate quality issues
• Make early design decisions with compliance in mind (e.g. – “eco-design”)
• Minimize corporate risk by protecting access to all IP
• Confidently include suppliers during development by ensuring sensitive materials are safe
• Maximize reuse for cost and time-to-market improvements
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Strategic Customer Relationships
Capture Ideation
Process Output
Identify Product Variants
Define Product Portfolio
Manage
Configuration Rules Delivering
Delightful Customer
and Consumer
Experience
ENOVIA Requirements Central
ENOVIA Variant Configuration
Central Input and reviews
from users
throughout the
company
…
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Product Planning and Programs
Schedule On-Time and On-
Budget Product Releases
Optimize Company
Resources
Deliverable-Driven
Project ExecutionTrack Project Completion
in Real Time
Institutionalize company
standards
Precise
Orchestration Of
the Innovation
Processes
Secure Collaboration
with any contributor
to the project
…
ENOVIA Program Central
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Global Product DevelopmentGlobal Design Management
Mechatronics Systems
Design and ArchitectureMechanical CAD
and Electro-
Mechanical Design
Embedded Software
Design Management
Electronics Design
for PCB and
Silicon-on-Chip
Global Effectiveness
While Optimizing
Costs
Performance and
Mfg Validation
ENOVIA VPM Central
ENOVIA DesignSync Central
ENOVIA VPM Central w/ Systems
Functional Logical DefinitionENOVIA VPM Central
ENOVIA Designer Central
ENOVIA Designer Central
ENOVIA DesignSync
Central
Seamless, Cross-Functional
Change Management
18
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Global Product DevelopmentGlobal Engineering, Manufacturing, & Service Management
Engineering BOM Mgt to meet
cost targets and plan
manufacturing and supply
chain strategies
Manufacturing BOM
Mgt w/ selection of
plant specific parts
Track parts in service
Seamless, Cross-Functional
Change Management
Global
Effectiveness
While Optimizing
Costs
ENOVIA X-BOM Unit
Tracking
ENOVIA X-BOM
ManufacturingENOVIA Engineering Central
19
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Strategic Supplier Relationships
New Part/Module
Identification and
Classification for Reuse
Supplier monitoring
and part quality
submissions
Collaborative supplier
selection via
electronic RFQ
Collaboration with
Engineering and
the Supply Chain
Vibrant Supplier
Innovation
ENOVIA Component Central
ENOVIA Supplier Central
ENOVIA Sourcing Central
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Quality & Compliance
Materials
Compliance
Quality
Management
Manage supply chain
material declarations
Collect regulatory &
corporate requirements
Analyze environmental
compliance status
Leveraging the expertise
of the enterprise and
supply chain to achieve
compliance
…
Mitigate non-conformances
and complaints
Perform corrective
actions and audits
Flawless
Quality &
Compliance
ENOVIA Product Quality Central
ENOVIA Quality Improvement Central
ENOVIA Materials
Compliance Central
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IP Classification and Security
Secure
Intellectual
Property
Regulatory Authority
Reporting
Manage 3rd Party IP Use
Relative to Legal Agreements
Comply With International IP
Sharing Regulations
Define classification taxonomies
conforming to standards
Document &
knowledge
management
Search, Review &
Collaborate
ENOVIA Library Central
ENOVIA IP Protection
Classification
22
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12 What does it mean : Business Platform versus PDM ?
Main roles in the Main area « Global Product Development » : Engineering and Manufacturing
How is seen the integration of System engineering with New Generation PLM
Example of this integration
Agenda
23
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The Analyst's Perspective
Why is a comprehensive BOM strategy important to manufacturers?
Managing bills of material (BOMs) is one of today's most critical priorities for
successful product life cycle management (PLM). The value of the BOM spans
many activities, including product design, production planning, manufacturing
execution, sourcing, service and product discontinuation. Strategy for BOMs has
a significant impact on business performance throughout the entire product
lifecycle.
-- Gartner Inc 31-March-2011
““
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The Analyst's PerspectiveWhat are main business benefits of strong BOM practices?Improving product success in global markets
Manufacturers want to address the particular needs of multiple markets, yet maintain a large percentage of
common parts. Well-structured BOMs facilitate the ability to source parts around the world to make
production of product variants more efficient for different markets.
Reuse of product designs for new product families
Manufacturers create few products that do not reuse aspects of existing designs.
Therefore, well-structured BOMs facilitate reuse of previous design content.Faster introduction of new products
The well-orchestrated conversion of completed product designs to physical
products means a greater window of opportunity for sales. A rapid ramp-up of
production requires efficient conversion of designs into manufacturing BOMs that
can be used to reliably order parts, ingredients and materials.
-- Gartner Inc 31-March-2011
““
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Manufacturing Model
Pro
du
ct C
om
ple
xity
Discrete High Volume
Assemble to Order (ATO)
Discrete High Volume Configure
to Order (CTO)Discrete Low Volume
Engineer to Order (ETO)
High Volume Batch Make to
Stock (MTS)
Enterprise BOM Magement Industry ApplicabilityThe product complexity and manufacturing model for a given
industry influence the enterprise BOM management
approach
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12 Engineering BOM
Configured
Engineering BOM
Manufacturing BOMPlanning
Service BOM
Enterprise BOM Views by Industry
Manufacturing BOMPlant specific
High Volume Batch
Make to Stock (MTS)
Discrete High Volume
Assemble to Order (ATO)Discrete High Volume
Configure to Order (CTO)
Discrete Low Volume
Engineer to Order (ETO)
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Product Lifecycle Management & Data ReferentialIntroduction
EVOLUTIONS / CHANGES
As Maintained
As Built
As Planned
As Designed
As Conceived
As Specified
As Required
DIV
ER
SIT
Y
Product Features
Product Configurations
Baselines / Units / Lots / Time
Configured
Context in
Modelling Apps
Virtual
Product
Data
Referential
Portfolio
Management
Program & Project
Management
Change Management
Configuration
Management
Technical
Processes
Portfolio,
Projects,
RFLP, etc
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EBOM Management Unifies the Entire Enterprise
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A Day in the Life of the Product EngineerCollaborate with a Product Manager to
understand and influence market and
technical requirements for a product line, and
the rules for defining new products
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A Day in the Life of the Product EngineerPlan design work that is needed across all disciplines
(Systems Engineer, Mechanical Designer, EDA
Designer, and Software Designer), and manage
changes to the Engineering Bill-of-Material
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A Day in the Life of the Product Engineer
ENOVIA Live Collaboration
ENOVIA Component Experience
ENOVIA Live Collaboration
ENOVIA Component Central
ENOVIA Sourcing Central
ENOVIA Supplier Central
Collaborate with…
… a Component Manager to maximize the
use of standard parts
… a Buyer to determine which Suppliers to
leverage for the design and/or manufacture of
new parts
… with a Supplier Relations Manager to
ensure that the chosen Supplier(s) will perform
to expectations
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ENOVIA Live Collaboration
ENOVIA Materials
Compliance Central
A Day in the Life of the Product Engineer
ENOVIA Live Collaboration
ENOVIA X-BOM Materials Compliance
ENOVIA Engineering Central
Collaborate with an Environmental
Compliance Engineer to make sure the
product definition complies with worldwide
material substance regulations
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ENOVIA Live Collaboration
ENOVIA X-BOM Manufacturing
A Day in the Life of the Product Engineer
ENOVIA Live Collaboration
ENOVIA Engineering Central
Collaborate with a Manufacturing
Engineer to prepare for
downstream operations
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A Day in the Life of the Product Engineer
Report status to a Project
Manager and helps identify and
mitigate project issues
ENOVIA Live Collaboration
ENOVIA Program Central
ENOVIA Live Collaboration
ENOVIA Engineering Central
ENOVIA Program Experience
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A Day in the Life of the Product Engineer
Report status to a Project
Manager and helps identify and
mitigate project issues
ENOVIA Live Collaboration
ENOVIA Product Quality
Central
ENOVIA Live Collaboration
ENOVIA Engineering Central
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Main roles in the Main area « Global Product Development » : Engineering and Manufacturing
How is seen the integration of System engineering with New Generation PLM
Example of this integration
Agenda
37
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System Vision: Execution of Product Definition
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Virtual System 3D Experience
Play ExperiencePlay Experience
Compose ExperienceCompose Experience
System Test & Validation
Hardware In
the Loop
Systems in the age of Experience
System Behavior Modeling - Modelica
Multi-Physical ModelingPlant
Control ModelingControl
IndustriesDisciplines
ApplicationsApplications
Con
tent
Con
tent
ApplicationsApplications
Con
tent
Con
tent
Safety
Software In the
Loop
Embedded System
Model to Code
Requirements (R) - System Architecture (FL)
Search & Navigate
Product Structure (P)
Configuration IP Synthesis Change MngtProgram Certification People & SecurityIP capitalization
System Verification
validation
Op
enn
ess
Use
r ex
per
ien
ce /
Per
form
ance
Digital mock-up
SW / HW Architecture
&
Communication
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Links between deliverables and Tasks achievement
Driving the Program in conjunction with DeliverablesMaster Plan
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A unified system definition in the context of life cycle management
System Engineering in Business Platform
To support Model Based Systems Engineering (MBSE)
A unified platform :
System reasoning with RFLP framework adaptable to customer process from different point of views: Requirements (R), Services or Technical Functions (F), Components (L)
Operational vision: understand the system context and scenarios of use, define the Requirements
Design vision: define system functional & components architecture, flows and interfaces, and provide requirements to the system components
Behavior vision: verify the system behavior (Modelica…)
Digital Continuity across disciplines (From Systems Engineering to Electrical, Fluidic , Mechanical) through RFLP framework
Enable users to collaborate on a single source of truth
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RFLP Data ModelRFLP Paradigm > a unified system definition with 4 fundamentals facets (views)
SYSTEM LEVEL (1)
SUBSYSTEM LEVEL SUBSYSTEM LEVEL SUBSYSTEM LEVEL
Customer NeedsRequirement Engineering Functional
Architecture Design(2) Logical Architecture
DesignManagement Processes
(Governance) (3)
Verification & ValidationIntegration (Tests)
Product “As
System”
(1) Abstration level (system decomposition by levels)
(2) Functional Analysis
(3) Configuration Management, Change Management, Portfolio Management,
BOM Management, Decision Making, Issue & Defect, Project Management
Software
Electronics
Mechanics, etc
Software
Electronics
Mechanics, etc
PhysicalPhysical Physical
Virtual/Real (Physical)
R
F
L
P
Software
Electronics
Mechanics, etc
R F L P R F L PRR FF LL PP
R
FF
L
P
Requirements
FunctionsLogical
Physical
(Product)
Behavioral Experience
Decomposition (logical)
•Allocate functions & requirements
• partitonning
Benefits
• Requirement
Driven
• Unique
System definition
• Early simulation
•MBSE
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System
Operational
Definition
System
Design
Actor 2
WHAT(black box)
Role
L
System Requirements
System
FService
LF
Actor 1
Role
L
F Service
Needs
R
R
Concept of Operations
Functional Chain
Technical Functions
Coverage Link
Actor 2
FDesign
Requirements
R
(white box)
HOW
Sub-System 2
Sub-System 1
Implemented by
L
Sub-System 3
Elicit Stakeholders
Needs at System
level
Analyze,
Decompose
and Allocate
Define
Functional
Architecture
Define
Components
Architecture and
allocate Technical
Functions
Define
Operational
Architecture
Systems Engineering methodology supported by RFLP data model
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System Architecture EngineeringApplication of RFL Model & Full traceability | Example
The architects define the system
Services and associated
requirements
1The Services are refined in a
network of elementary functions (‘Technical
Functions’) withRequirements & flows
2
Initialize Pressurization
Control Pressure
Pressure
Command the pressurization initialization
Pressure Water Circuit
Control Pressure
Pressure
Measure Pressure
…
Components are defined / reused in an Architecture with Requirements & interfaces (logical ports)The elementary functions with their Requirements are allocated to components. Flows are allocated to interfaces
3
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Summary: 3DEXPERIENCE Platform for Systems Engineering
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Video to illustrate an example of Integrated SE
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14 Systems Governance
Systems Architecture
Conceptual
Mechanical
Detail Mechanical
Systems Engineering Landscape
Embedded Electronics Architecture
Fluidics
Fluid 3D Modeling
Systems
Execution &
Testing
Electrical
Electrical 3D
Modeling
Embedded SW
Architecture
Code Generation
Product Line Engineering Program & Project Management Product & Simulation Lifecycle Management
System-Level Dynamic Model & Simulation
Requirement Engineering
Architecture Design
Stakeholders Needs