FDT Technology - Read-out Instrumentation Signpost

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Transcript FDT Technology - Read-out Instrumentation Signpost

FDT Technology
IEC 62453 / ISA SP103
Standardized Communication Interface
Between Field Devices and Systems
Stefan Lugert
Endress+Hauser Process Solutions
on behalf of
Klaus-Peter Lindner: Vice President Associations &
Standardization
FDT Group
Brussels, Belgium
www.fdtgroup.org
Welcome
Stefan Lugert
[email protected]
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Endress+Hauser Process Solutions AG, Reinach, Switzerland
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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
Process Control
Supply Chain Management
Plant Asset Mgmt.
Inventory Control
Products
Systems
Competencies
Integration Technologies
Instruments
E+H Solutions
Applications/Solutions
Plant
Customer Process
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Production Process
Asset Management Process
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Logistic Process
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Agenda
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User requirements overview
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Technical concept
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Nested communication
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Application examples
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Standardization of FDT
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The FDT Group
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General user Requirements
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Device Integration Requirements
Optimization
Engineering
Operations
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Configuration
Parameterization
Commissioning
Control/Operation
Communication
Control application
Alarms/events
Process graphics
Operation
Display
Alarm signals
Diagnosis
Maintenance
Calibration
Controller
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Process variables
Time synchronization
Status
Advanced applications
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Diagnosis
Calibration
Maintenance
Field Devices
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FDT Technology
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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
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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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General Architecture
DTM
• Device Type Manager
• Represents the device
• Supplied by device vendor
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Frame Application
• Launches the DTM
• Supplied as part of host system
• Manages the device instances
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Nested Communication with FDT
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Routing through system topology
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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
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Over the complete network
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Communication driver for
each protocol:
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AS-Interface
DeviceNet
FOUNDATION fieldbus
HART
INTERBUS
IO-Link
MODBUS SL/TCP
PROFIBUS
PROFINET I/O
…
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DTM and Frame Application
Frame
Application
DTM
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Example 1: Radar Level Transmitter
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DTM used for device calibration
DTM used for configuration of linearization
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Example 2: Valve Positioner
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DTM enables advanced valve diagnostics
Control valve diagnostics enables better decisions for shut
down planning
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Example 3: Multivariable Transmitter
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DTM used to calculate coefficients for dp
flow transmitter
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Switch Flow
Measurement “On”
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The calculation
values of the
Primary Device
entered here are the
basis for the flow
calculation
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Calculate and you
get special
parameters as
result.
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Download
parameters in
device.
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Example 4: Segment Coupler
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Example 5: Universal Motor Controller
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DTM used to configure motor controller an display
diagnostic information
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Example 6: H1usb DTM
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Functionality
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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
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Basic Structure of IEC 62453
Part 2
Concepts and
detailed description
Part 3xy
Communication
Profile
Integration
Part 4z
Object Model
Integration Profile
Part 5xy
Communication
Profile
Implementation
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Part 61
DTM Style Guide
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IEC 62453 Structure
 Part
1 (TR): Overview and guidance
 Part 2 (IS): Concepts and detailed description
 Part 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 model
 Part 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
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IEC 62453 PAS FDT Specification was positive voted in
October 2005.
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Establishment of IEC SC65C WG 14
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Reorganization to IEC SC65E WG4 beginning of 2007
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Members (DE, FR, FI, Swiss, UK)
Chairman: Prof. Dr. Christian Diedrich, ifak
Kick Off – 31th January to 1st February 2006
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:
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CD 1
CD 2
CD 2
CDV
FDIS
IS
29 August 2006
June 2007
Closing date for comments 2007-09-07
February 2008
December 2008
May 2009
Publicly
Available
Standard
(PAS) 62453
Oct
Committee
Draft (CD) 2
Apr
Aug
Committee
Draft (CD) 1
2006
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Final Draft
International
Standard (FDIS)
2007
Feb
Committee
Draft for
Vote (CDV)
2008
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May
International
Standard (IS)
2009
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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 subsystems in a software module.
3) This standard shall allow any field bus, device or subsystem 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 lifecycle. The main aims are:
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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)
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Integrated and consistent life-cycle data of the control system including the
fieldbuses, devices and sub-systems
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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
, Rockwell
, Saudi Aramco
, Schneider
, IX
, Flowserve
, ISA
, Zhejiang University
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, ABB
, Flowserve
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The FDT Group
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The FDT Group is an
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open
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independent
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non-profit
association of currently 61 international companies
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Owner of the FDT Technology
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Responsible for maintenance, further development, and
promotion of FDT Technology
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Responsible for certification and compliance testing of FDT
products
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Dedicated to establishing and maintaining FDT Technology
as an international standard with broad acceptance within the
automation industry
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Open to all companies that wish to participate
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62 Members (Status March 2008)
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Certification Process
Manufacturer
Test site
FDT-Conformance test based on
test tool
Product successfully
pre-tested
Contract
Test report
Test report
Check Report, issue
certificate
FDT Group Certification Office
Listing at
FDT Group homepage
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Product
certificate
On request of
Manufacturer
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FDT Specification – The Key Points
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FDT is an interface specification for integrating device
specific software components
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FDT specification defines mechanisms to satisfy standalone
tool‘s and control system‘s requirements
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FDT-Specification covers use cases:
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Configuration
Parameterization
Commissioning
Diagnosis
Audit Trail
Product documentation, application documentation
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WIB Test Results
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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
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Systems:
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Devices:
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Frames: Emerson, Invensys, Yokogawa
Stand alone tools: PACTware, Field Mate, Field Care
Positioners: Metso,
Invensys, Emerson
Multivariable: Yokogawa
Conclusion
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eEDDL offers required data accessibility and functionality as used in
commissioning of FF smart devices
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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
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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
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FDT Group joined EDDL Cooperation Team (ECT) in 2007
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Working Group for Field Device
Integration (FDI) established
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Scope: Next generation of
integration technology
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Target: One single solution
for device integration satisfying
process and factory automation
by using the benefits both
technologies: EDDL and FDT
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Goal: First draft specification mid 2009
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EDD Integration using iDTM™
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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i
iDTM HART
SDC625
Interpretation
DDs
EDDs
FieldCare
Device
DTM
FDT interface
Communication
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Thank you for your attention!
Open access to device intelligence
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[email protected]