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Stefan LugertEndress+Hauser Process Solutions
on behalf of Klaus-Peter Lindner: Vice President Associations &
StandardizationFDT Group
Brussels, Belgiumwww.fdtgroup.org
FDT Technology-
IEC 62453 / ISA SP103
Standardized Communication Interface Between Field Devices and Systems
Pharmatex, Cork 18/09/08
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Welcome
Stefan Lugert
Endress+Hauser Process Solutions AG, Reinach, Switzerland Manager Marketing & Sales 10 years at Endress+Hauser Process Solutions Responsible for Sales of PC PS Solutions Products and Services to
Endress+Hauser Sales Organisations .
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PC Process Solutions
Endress+Hauser Process Solutions AG was founded to create added value to Endress+Hauser core business by providing products, systems, services and process automation solutions based on open standards.
Founded December 1999, start-up January 2000 Located in Reinach, Switzerland Currently employs more than 110 people Joint ventures of Endress+Hauser:
CodeWrights, Karlsruhe, Germany (67%) Metso Endress+Hauser Technology AG, Reinach,
Switzerland (50%) Open Field Communications, Morisset, Australia
(70%)
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Solutions from Endress+Hauser
Process Management Supply Chain ManagementProcess
ControlPlant Asset
Mgmt.
Plant
Inventory Control
Production Process
Asset Management Process
Logistic Process
Integration Technologies
Instruments
Customer Process
ProductsSystems
Competencies
Applications/SolutionsE+H Solutions
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Agenda
User requirements overview
Technical concept
Nested communication
Application examples
Standardization of FDT
The FDT Group
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General user Requirements
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Control/Operation Communication Control application Alarms/events Process graphics
Control/Operation Communication Control application Alarms/events Process graphics
Optimization Engineering Operations
ControllerDiagnosisMaintenanceCalibration
ConfigurationParameterizationCommissioning
OperationDisplayAlarm signals
Process variablesTime synchronizationStatus
07
Field Devices
Advanced applications Diagnosis Calibration Maintenance
Advanced applications Diagnosis Calibration Maintenance
Device Integration Requirements
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FDT Technology
Windows® Interface The printer driver is used in different programs in the same way The printer driver contains the configuration, diagnostics and
other functionalities The printer driver is developed and delivered from the printer
manufacturer
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FDT Technology
FDT/DTM Interface The DTM is used in different programs in the same way The DTM contains the configuration, diagnostics and other
functionalities The DTM is developed and delivered by the device manufacturer
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DTM• Device Type Manager• Represents the device• Supplied by device vendor
Frame Application• Launches the DTM• Supplied as part of host system• Manages the device instances
General Architecture
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Nested Communication with FDT
Routing through system topology A DTM does not have any knowledge about the network
topology A DTM must only support its own communication protocol Communication / routing through ANY network topology, no
limitations Communication / routing is possible even if the underlying
protocol is unknown by the engineering or standalone tool
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Plant wide data access with FDT
Over the complete network
Communication driver for each protocol:
AS-Interface DeviceNet FOUNDATION fieldbus HART INTERBUS IO-Link MODBUS SL/TCP PROFIBUS PROFINET I/O …
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Frame Application
DTM
DTM and Frame Application
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DTM used for device calibration DTM used for configuration of linearization
Example 1: Radar Level Transmitter
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DTM enables advanced valve diagnostics Control valve diagnostics enables better decisions for shut down planning
Example 2: Valve Positioner
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Switch Flow Measurement “On”
The calculation values of the Primary Device entered here are the basis for the flow calculation
Calculate and you get special parameters as result.
Download parameters in device.
DTM used to calculate coefficients for dp flow transmitter
Example 3: Multivariable Transmitter
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Example 4: Segment Coupler
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DTM used to configure motor controller an display diagnostic information
Example 5: Universal Motor Controller
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Functionality Enables any FDT Frames to access FF/H1 field devices
via H1usb interface Plug&Play parameterization, diagnostics and
maintenance CommDTM acc. to FDT 1.2 Acts as H1 Client Live list Set/change device address
Example 6: H1usb DTM
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Basic Structure of IEC 62453
Part 3xy Communication Profile Integration
Part 2 Concepts and detailed description
Part 4z Object Model Integration ProfilePart 5xy
Communication Profile Implementation Part 61
DTM Style Guide
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IEC 62453 Structure
Part 1 (TR): Overview and guidancePart 2 (IS): Concepts and detailed descriptionPart 301 (IS): Communication profile integration - IEC 61784 CPF 1
Part 302 (IS): Communication profile integration - IEC 61784 CPF 2
Part 303-1 (IS): Communication profile integration - IEC 61784 CP 3/1 and CP 3/2
Part 303-2 (IS): Communication profile integration - IEC 61784 CP 3/3, CP 3/4 and CP 3/5
Part 306 (IS): Communication profile integration - IEC 61784 CPF 6
Part 309 (IS): Communication profile integration - IEC 61784 CPF 9
Part 315 (IS): Communication profile integration - IEC 61784 CPF 15
Part 41 (TR): Object model integration profile – Common object modelPart 501 (TR): Communication profile implementation - IEC 61784 CPF 1
Part 502 (TR): Communication profile implementation - IEC 61784 CPF 2
Part 503-1 (TR): Communication profile implementation - IEC 61784 3/1 and CP 3/2
Part 503-2 (TR): Communication profile implementation - IEC 61784 CP 3/3, CP 3/4 and CP 3/5
Part 506 (TR): Communication profile implementation - IEC 61784 CPF 6
Part 509 (TR): Communication profile implementation - IEC 61784 CPF 9
Part 515 (TR): Communication profile implementation - IEC 61784 CPF 15
Part 61 (TR): DTM Style Guide
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IEC 62453 History
IEC 62453 / SC65E WG4: Field Device Tools Interface
IEC 62453 PAS FDT Specification was positive voted in October 2005.
Establishment of IEC SC65C WG 14
Members (DE, FR, FI, Swiss, UK) Chairman: Prof. Dr. Christian Diedrich, ifak Kick Off – 31th January to 1st February 2006
Reorganization to IEC SC65E WG4 beginning of 2007
Same members and chairman Additional 3 Chinese members
IEC 62453 CDV FDT Specification was positive voted in August 2008.
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IEC 62453 Schedule
IEC 62453 Milestones:
CD 1 29 August 2006 CD 2 June 2007 CD 2 Closing date for comments 2007-09-07 CDV February 2008 FDIS December 2008 IS May 2009
Committee Draft (CD) 1
Final Draft International Standard (FDIS)
Publicly Available Standard
(PAS) 62453Committee Draft (CD) 2
2009
MayDec
200820072006
FebAprAugOct
Committee Draft for Vote (CDV)
International Standard (IS)
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ISA SP 103 Scope
1) To form the core of the U.S. TAG to IEC SC65E WG4 and to assist TAG to select experts from the U.S.
2) To define the interfaces for both the vertical and the horizontal data flow, called Function Control and Data Access, in the framework of a Client-Server architecture. It shall allow application software and configuration tools to interact with field devices in a unified way, while hiding the manufacturer-specific interaction with devices or sub-systems in a software module.
3) This standard shall allow any field bus, device or sub-system specific software tool to be integrated as part of a universal life-cycle management tool of a plant automation system.
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ISA SP 103 Purpose
1) To ensure the consistent management of a plant-wide control and automation technology, it is necessary to fully integrate fieldbuses, devices and sub-systems as seamless part of a wide range of automation tasks covering the whole automation life-cycle. The main aims are:
Universal and central plant-wide tooling for the life-cycle management of heterogeneous fieldbus environments, multi-vendor devices and sub-systems independently of the automation domain (e.g. process, manufacturing)
Integrated and consistent life-cycle data of the control system including the fieldbuses, devices and sub-systems
Simple but still powerful vendor-independent integration of different automation devices and sub-systems into the life-cycle management tools of a control system.
2) The main application domains are industrial process control and manufacturing execution systems.
3) The benefits are savings in operation, engineering and maintenance of the control systems.
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Members of ISA SP 103
, Rockwell
, Endress+Hauser
, Yokogawa
, Schneider
, Flowserve
, Zhejiang University , Flowserve
, Saudi Aramco
, Rockwell
, ABB
, IX
, ISA
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The FDT Group
The FDT Group is an open
independent
non-profit
association of currently 61 international companies
Owner of the FDT Technology
Responsible for maintenance, further development, and promotion of
FDT Technology
Responsible for certification and compliance testing of FDT products
Dedicated to establishing and maintaining FDT Technology as an
international standard with broad acceptance within the automation
industry
Open to all companies that wish to participate
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62 Members (Status March 2008)
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Certification Process
FDT-Conformance test based on
test tool
FDT-Conformance test based on
test tool
Listing atFDT Group homepage
Listing atFDT Group homepage
Product successfull
y pre-tested
Product successfull
y pre-tested
Check Report, issue
certificate
Check Report, issue
certificate
Test site
FDT Group Certification Office
Test reportTest report
Product certificate
Manufacturer
Contract
On request of Manufacturer
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FDT Specification – The Key Points
FDT is an interface specification for integrating device specific software components
FDT specification defines mechanisms to satisfy standalone tool‘s and control system‘s requirements
FDT-Specification covers use cases: Configuration Parameterization Commissioning Diagnosis Audit Trail Product documentation, application documentation
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WIB Test Results
Commissioned by WIB Performed by SHELL Global Solutions lab during Q2 and Q3 07 Compares performance of DTM and eEDDL technologies in
commissioning, operation and maintenance for FF based devices Systems:
Frames: Emerson, Invensys, Yokogawa Stand alone tools: PACTware, Field Mate, Field Care
Devices: Positioners: Metso, Invensys, Emerson Multivariable: Yokogawa
Conclusion eEDDL offers required data accessibility and functionality as used in
commissioning of FF smart devices FDT/DTM offers required data accessibility and extended functionality as
used in commissioning and maintenance of FF smart devices in a very effective manner.
More FF devices are needed in eEDDL and in FDT/DTM The two technologies are complementary FDT is the right platform for HMI and Applications
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FDT Group Co-Operations
via ECT
via ECT
via ECT
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Future Work Outlook
FDT Group joined EDDL Cooperation Team (ECT) in 2007
Working Group for Field DeviceIntegration (FDI) established
Scope: Next generation ofintegration technology
Target: One single solutionfor device integration satisfyingprocess and factory automationby using the benefits bothtechnologies: EDDL and FDT
Goal: First draft specification mid 2009
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EDD Integration using iDTM™
FieldCare
FDT interface
Device DTM
iiDTM HART
SDC625
Communication
DDs EDDsInterpretation
FieldCare
FDT interface
Device DTM
iiDTM HART
SDC625
Communication
DDs EDDsInterpretation
iDTM™ interprets EDDs and enables integration of 3rd party devices without dedicated device DTMs using a FDT Frame Application (e.g. FieldCare)
iDTM™ HART available in March 2008 iDTM™ for FOUNDATION Fieldbus and PROFIBUS to
follow
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Open access to device intelligence
Thank you for your attention!