16183843 Yokogawa Centum CS3000 Overview
Short Description
Download 16183843 Yokogawa Centum CS3000 Overview...
Description
YOKOGAWA
DCS Introduction CS 3000 – Integrated Control System Overview Advanced , Flexible Operator Functions Powerful Control Station Features Flexibility in Engineering Integrated Solutions – Extended Applications Unique Advantages leading to Lower TCO
DCS Background C DD
System Cost
DDC
A
a ctu
log a An
cted e p Ex
No. of Loops Early1960s
l
Computer Compatible Controller 62H
Nest Type Controller (SPEC-200)
DCS (TDC-2000) 1975
Base: * Computer Compatible System * Process I/O with PID back up
*Position DDC as a Future System *Justify DDC cost by Automation Promotion
DCS (CENTUM) 1975
Base: * Enhancement of DDC from cost, failure problem, engineering point of view
First Generation DCS 1975: CENTUM was developed based on DDC Experience < CENTUM is the first Distributed Control System in the world.> – High Confidence on Reliability /Dependability • First Token Pass Highway in the world. * Token Pass Data High Way -- No Electronic Parts at System Common. -- Redundant Highway alternately used for Complete Error Detection -- Became the Base of IEC Standard ”PROWAY”. then IEEE 802.4, MAP, and FieldBus.
• Duplex Control Station * CPU redundancy -- Memory Update is a Key and Most Difficult -- Block by Block and Table by Table Memory Copy was applied. * Internal Bus Redundancy -- Redundant Internal bus between CPU and I/Os with Alternate Use -- Power Supply for I/Os are also Redundant.
–
Easy Engineering for Automation and Advanced Control
–
User Friendly CAD (Fill-in Type) based Engineering
History of Yokogawa DCS 1965
1970
1975
1980
1985
1990
1995
2000
Supervisory Computer System YEWCOM, HP9000 Computer Systems for Control CCS
YODIC100 YODIC1000 Production Line Control System Concentrated Control System
YEWMAC
ASTMAC
YODIC500 YODIC600 CS1000
DCS
CENTUM
CENTUM-V CENTUM-XLCENTUM CS/CS3000
YEWPACK YS 80 Analog Control
ECS
EBS
I SERIES
μXL YS 100
Progress of Yokogawa DCS system ’75 ~’ 78
’79 ~’ 82
’82 ~’ 88
’84 ~’
’88 ~’
’98 ~’
’92 ~’
INTEGRATED SYSTEMOPEN SYSTEM EXCELLENT SYSTEM
NEW MODEL 1. High Speed Comunication THE FIRST DCS Bus 1. Unified Operator SYSTEM IN THE 2. WORLD Stations Adoption of 2. Redundant HDD 1. Distribution of Control Control Stations 3. CMOS Memory 2. FIF 4. One-Touch CTM - 2 Operation
COPS
2. Voice Output 3. Japanese Language Support 4. SequenceCE NTU M- V oriented Control Station
(Function Key Development)
CS3000
C ENTU M CS
CENT UM- XL
XLAIS
Computer EOPS ENGS Station
ICS 10Mbps BCV
COPSV
V net
FCS
COPS2
7DF COPS 7DF
1. WINDOWS-NT OS 1. UNIX OS 2. Client / Server 1. Function Assignment 2. Advanced Control 3. Migration 3. Open Net Work 2. Separation of Engneering USER ORIENTED 4. High Reliability 3. High Peroformance 4. High Reliability OPERATION 4. Touch Operation 5. Utilisation of Users’ Assets 6. Easy Engineering 5. Window 1. Enhanced 6. Integration (Super Window) CENTUM Functions of OPS7. Expanded Control Capacity
7VP
EFCS 1Mbps HF-BUS
CFFS
256Kbps CFCS
CFSS
CFCS2 HF/F Converter Station
F-BUS 7FS
Control Loops Sequence Tables
32 20
32 20
40 40
40 200
80 200
4096 Blocks
HIS
Technology waves on Control Systems
Windows 2000 Internet IT
NT and Microsoft UNIX Micro processor
1st CENTUM
V
XL
CS
CS 3000
CS 3000 R3
June 1975
’82
’88
’93
’98
‘01
time
Enterprise Technology & Solution Business (Top Management) Domain
Business Domain
◆ Corporate Information systems ◆ Enterprise Resource Planning (ERP) ◆ Supply Chain Management (SCM)
Manufacturing Exec. System Domain ◆ Plant Information & Management System
MES Domain
(PIMS) ◆ Maintenance Management (MM)
Control Domain Control Domain
Advanced Application ◆Advanced Process Control (APC) ◆ Advance Operation Assistance (AOA) Plant Control Room/Factory Floor
DCS/PLC/PC/ESD/F&G
Field Domain
Field Domain Fieldbus and conventional Field Instrumentation.
DCS Introduction CS 3000 – Integrated Control System Overview Advanced , Flexible Operator Functions Powerful Control Station Features Flexibility in Engineering Integrated Solutions – Extended Applications Unique Advantages leading to Lower TCO
Integrated Plant Control System (IPCS)
Hi-Tech Solutions Available in CS1000/3000 ◆Foundation Fieldbus ◆Profibus ◆ExaOPC - OPC Interface
OLE for Process Control
OPC Compliance Exaopc:
Domain wide “OPEN”Interface
PIMS / Maint.Mgt.
M E S
OPC Client
OPC Interface
APC/AOA
Process Data
OPC Client
C O N T R O L
Eng. Data
HIS/ ENG
HIS OPC Server
V-net ABC-H FCS
CENTUM-XL
HF-Bus
Positioning of CS 3000 R3 Well-balanced open architecture and reliability New migration path supplies open architecture with existing systems.
Migration
Business Systems ERP/SCM
PIMS
HMI CENTUM CS 3000 R3
APC AOA MM
FCS Rich interface by new I/O.
Existing Systems CENTUM-XL CENTUM V
Featuring cutting-edge “open” technologies
Field Network
FOUNDATION™ Fieldbus
Typical System Configuration Remote DCS Domain
Business Domain
Ethernet Closed-type HIS LCD-type HIS AOA
APC PIMS
HIS/ENG
MM ACG
Vnet APCS FCS With I/O
Mulcom
Incl. Fieldbus Engg.
Prosafe-ESD
RS-232/485/Ethernet
I/O in the Remote Field
(ExaCoast)
BCV Migration bus converter CS/CS 1000/3000 CENTUM-XL/V/ µXL
H1 Fieldbus
Field Devices PLC / Remote I/O / Subsystems
System Scalable Min. Configuration Single Domain Configuration
Expanded. System Configuration
Controller
Max. No. of Tags Max. No. of Stations
One Process Unit
Whole Complex
: 100,000 per HIS : 64 Expanded System Max. No. of Domains Max. No. of Stations
: 16 : 256
Security User Group Check user name
User in
User Permission Check operation and monitoring scope
•Function block operation and monitoring
Check operation and monitoring authority
•Windows operation and monitoring •Receipt of messages
Operation History
Tag Basis Important Tag
(Major Alarm)
Operation Mark Key Access
Ordinary Tag (Medium Alarm)
Auxiliary Tag1
(Minor Alarm)
Auxiliary Tag2
(Logging Alarm)
Windows user security
PV CONTROL 0007 PVPVPVPVPVPVPVPVPV SVSVSVSVSVSVSVSVSV FIC001
DCS Introduction CS 3000 – Integrated Control System Overview Advanced , Flexible Operator Functions Powerful Control Station Features Flexibility in Engineering Integrated Solutions – Extended Applications Unique Advantages leading to Lower TCO
Monitoring & Operation Human Interface Station
Management Information Easy integration with higher level systems Historical database packages etc...
Off line engineering On line engineering Powerful engineering & testing tools One global database etc....
Engineering
Maintenance Extensive self diagnostics Maintenance & report functions On-line maintenance Remote maintenance etc....
100.000 tagnames 2,500 Display Panels Enhanced trending Intelligent alarm functions Reliable security functions Windowing operation etc....
Process Information
(HIS)
Web based Plant Monitoring General-purpose PC
HIS graphic/trend windows are converted into HTML files and Java Applets
Web Server
Ethernet
Plant LAN/WAN
HIS General-purpose PC
Dial-up Internet Connection
Graphic windows, trend windows, and ITV windows
V net FCS
Plant monitoring on a business trip, at home, at maintenance office, etc. using Web Browser
Browser ❚
Yokogawa FIELDEYE ITV system ❙
The Web camera server enables ITV images to be displayed via a Web browser at an incredible low cost.
FIELDEYE System HIS
Internet Explorer (free) Ethernet or dial-up connection
Web camera server ITV image signal
ITV camera control signal
ITV camera
Multiple Monitor ❚ Efficient monitoring/control of Advanced Process Control/Operation by a single operator with dual monitor
Single Monitor Windows overlap each other. Hard to see!
Dual Monitors Much easier to see!
Operation and Monitoring Standard Operation and Monitoring Windows
Operation and Monitoring Support Functions
Graphic,Tuning, Trends, Alarms, Operator guidance
Process & Historical message reports, Security ITV camera & CENTUM desktop customization
Control Status Display Window Control drawing, Sequence table Logic chart window SEBOL & SFC windows
Common Operation and Monitoring Functions Window call-up, Window” or “Full screen”, System message, Window sizing, Window hierarchy, Navigator window…
Trend Functions Real time, Historical trends Long term data archive, External recorder, Expert trend viewer &Tuning trend
System Maintenance Functions System status, System alarm, HIS setting, Time setting dialog & Help dialog
Lets have a look at some samples
Operation and Monitoring Windows Navigator Window
Overview Window
Control Group Window
Trend Window
Tuning Window
Sequence Table Window
DCS Introduction CS 3000 – Integrated Control System Overview Advanced , Flexible Operator Functions Powerful Control Station Features Flexibility in Engineering Integrated Solutions – Extended Applications Unique Advantages leading to Lower TCO
Control Field Control Station Processor RISC processor Fixed scan times 4000 free configurable function blocks Powerful math. capacity etc...
Redundancy Redundant CPU, Power Supply and Communication Interface INPUT
BUFFER CPU
BUFFER
CPU
CPU
CPU
COMP
COMP
BUFFER
BUFFER
Unique Pair & Spare Design
OUTPUT
Easy integration subsystems e.g. PLC, SER.. Data exchange between FCS Support Fieldbus etc...
Integration
Large control block library Advanced control functions Calculation functions C-language Graphic Flowchart (SFC) etc...
Analog & Digital Control
Input Output Analog single card I/O Unit Current/Voltage In mV, Thermocouple, RTD Input Pulse Input Current/Voltage Out
I/OUnit 16 channels
Input/Output Modules I/OUnit 128 channels
Analog Multiplexer Unit (16 channels) ◆ ◆ ◆ ◆ ◆ ◆
RIO bus (max. 20 km) Node Interface Unit Max. 8 units per FCS
Input / Output Units Max. 5 units per NIU
Digital I/O unit connector type ◆ ◆ ◆ ◆
16 -pt. Input (isolated) 16 -pt Output (isolated) 32 -pt. Input 32 -pt. Output
Voltage Input mV Input Thermocouple Input RTD Input 2-wire transmitter input 4-20 mA Output
I/OUnit 32 channels
I/OUnit 2 ports
Communication unit
◆
RS-232C RS-422 RS-485 Fieldbus
◆
Profibus
◆
Ethernet
◆ ◆ ◆
Field Control Station and FIO feature .. Vnet
Direct Node Serial, Ethernet ・ ・ ・ FCS ・
PLC
New Remote I/O Bus (Ethernet)
To Field Device
FF-H1 4-20mA
(Subsystem)
Remote Node
FF-H1 To Field Devices
4-20mA (Conventional)
Fieldbus
FIO Features ❚ Small-sized (Compact) ❚ Two kinds of connection ❙ Direct Node ❙ Remote Node ❚ Dual redundant I/O Module are possible (for all type) ❚ Field Network ❙ RS:2 ports ❙ FF-H1 : 4 segments ❙ Profibus-DP
KFCS (Remote I/O type)
KFCS CP333 SB301
Local node
Generic cabinets Remote node
ESB bus 128 Mbps FIO
TB
FIO
TB
FIO
TB
FIO
TB
FIO
TB
Front
Rear
ER bus ( 10 Mbps )
FIO
TB
FIO
TB
Front ERbus : Enhanced Remote BUS
Rear
FIO Node overview Up to 8 I/O modules
Remote I/O Interface (10Base2) Power supply
5 units (222.3mm) 写真挿入
19 inches
Node / FIO Features Environment ❚
Zone2 Compliant
❚
Temperature -20 -- 70 DEGC
❚
corrosion gas resistant G3
Node ❚ Direct Node : Max 10 Nodes/FCS ❚ Remote Node : - Max 9 Nodes/FCS - Max 4 Nodes/RIO - Max 4 RIO/FCS ❚ Field Communication - 2 ports : RS - 4 segments : FF-H1
ALF111 Advantage (FF-H1) No. of Segments ❙ 4 Segments / ALF111 No. of Points ❙ 48 Points / Segment No. of total Points ❙ 3072 Points / FIO LFCS 48 Points x 4 Segments x 16 ALF111
Low cost of construction with FIO FIO can be installed closely near field devices to reduce wiring cost
Open architecture
FIO is compact: Saves Space
Ethernet based ER Bus RS232/422/485
Cost-effective choice is available: Single/Dual Isolated/Non isolated/Channel isolation Hi-Density modules Built in interpose relays avoids relay cabinets
Rich Flexibility:
Field connections
Field wiring method according to the application & budget Pressure Clamp Terminal block (Direct wiring for field devices)
Yokogawa Terminal Board, Cable & I/O adapter (Wiring of field devices via Terminal Boards/marshaling)
I/O module Terminal Board & MIL Connector Cable (Popular for low cost installations-Wiring of field devices via Terminal Board/Marshaling)
Remote I/O installation Explosive sites
Corrosive sites FCU
ooo
CCR (Central Control Room)
Separated sites
FF Solution: Four-segments & Redundant High density of segments provides Cost Effective FF solutions Redundancy of modules adds high reliability for FF solutions
4 Segments FF-H1
Port
1
ALF111
ALF111 SB40 SB40 1 1 IOM IOM IOM IOM IOM IOM or or PSU EB50 EB50 1 1
2
PSU
Local Node or Remote Node
3 4
Redundant Configuration Available Field Devices
Redundancy ❚ Synchronous hot standby with fully redundant hardware and duplex functionality in design
Unique Pair & Spare Design
DCS Introduction CS 3000 – Integrated Control System Overview Advanced , Flexible Operator Functions Powerful Control Station Features Flexibility in Engineering Integrated Solutions – Extended Applications Unique Advantages leading to Lower TCO
En gi neer in g Off line Engineering without Target Hardware by using Hardware Simulation Technology Off line Testing and Hardware Simulation
On line Engineering
CAE Computer Aided Engineering ENG Builder software
HIS
Concurrent Engineering
Order
Electronic Media Input
V net
FCS
Start-up
❚Engineering can start direct after ordering ❚Engineering up to Configuration Testing can be done Off Line
Concurrent Engineering Engineering done by multiple PCs DOWNLOAD the project
Engineering PC
Master Database HIS
Engineering PC FCS backup
Engineering PC
Virtual Test Function Virtual Testing HIS Function
Virtual Wiring
HIS
HIS
FCS Simulator
Off line Testing HIS Function
FCS Simulator
Exatif Communication Interface
Plant Simulator Plant Model
- Off Line Virtual Testing using only one PC - Connection with Plant Simulator using the FCS Simulator
DCS Introduction CS 3000 – Integrated Control System Overview Advanced , Flexible Operator Functions Powerful Control Station Features Flexibility in Engineering Integrated Solutions – Extended Applications Unique Advantages leading to Lower TCO
AOA: Advanced Operation Assistance Yokogawa’s unique AOA Solutions for the Benefits of Customers
Exa plo g:
Event Analysis Package
-Detailed Analysis of Process and Operation events -Helps in decision making for further Automation/Monitoring/Operation
Exa pil ot:
Operation Efficiency Improvement Packag
-Automation of St-Up, S/D, Transition & Emergency Procedures -Reduction in Operating Time during Manual Operation -Higher Productivity -Maximization of Safe Operation -Availability of “EXPERT” knowledge for uniform operation every time
Partners in Advanced Process Control
Shell Global Solutions
The Alliance
The Alliance Yokogawa Shell customers customers Market a c e b Segmentation
f d ROW
EX: EXA-SMOC with CS3000 Optional Remote Operation/ Monitoring
Ethernet Card Exasmoc OPC Client Exaopc OS Server
WIN NT
VF701 Card
Etherne t Operation / Monitorin g/ Control
Standard Displays APC Displays
HIS
HIS/E NG
SMOC-PC (Builder)
Optional Ethernet
Exasmoc Station Download
V Net / VL Net
SFCS Process Data LFCS
Exasmoc Data
YOKOGAWA
Exa tas Ter minal TAS-MS poll to Host System Architec ture and searches for the following
Sys tem TAS-MS Client
Delivery data:
TAS-MS Management - BOLServer No. - Delivery Number - Host System Interface - Order Management- Order Number - Truck Number - Traffic Management - Product and Quantity - Ship Loading/Unloading Management - Data Gathering - Management Data Handling - Reporting - Master Data Management
TAS-CS Control Station TAS-CS Human Machine Interface
Loading Control, Pump Management, Bay Change, Additive Control, Spot Loading, Loading Monitoring
Ex ata s Main F unc tio ns : Inte gra tion Host System (e.g., SAP ) Exatas Terminal Automation System Refinery Onsite Systems
Refinery Offsite System
Ethernet
TAS-MS Human Machine Interface (HIS)
Control Station (FCS)
If the terminal is a part of refinery.
If the terminal is a part of refinery. Tank Gauging
Safety System
MOV System
Electronic Preset
Card Reader
Various Subsystems
TIM3000 : Tank Inventory Management Functionality Real-time module Tank data collection Tank data calculation Tank status management Monitoring of job control conditions Monitoring of tank behavior Interface Module Collection of tank snapshots into Database Receipt of tank property
Features
Benefits
Modularity of functions Adoption of Oracle RDBMS Easy interface to other systems Easy development of reports Easy development of user interface Connectable to various TGS Reliable TGS
Safe tank operation Provision of tank data for operation accounting & scheduling Precise grasp of tank inventory
PIMS: Plant Information & Management System
DATA RECONCILIATION
PERFORMANCE MONITORING
MASS BALANCING
PROCESS PLANT PLANT UNIT TANK FACILITY STREAM
PRODUCTION ACCOUNTING
ECONOMIC CHARACTERISTICS
MATERIALS
FEED INTERMEDIATE FINISHED PRODUCT CHEMICALS UTILITIES
PLANT MODEL TECHNICAL CHARACTERISTICS
isa
PIMS
LIMS
ENVIRONMENTAL MONITORING
ERP CMMS EDMS
OPERATIONS ACTIVITY MANAGEMENT
DATA MANAGER
HISTORICAL DATABASE
REAL TIME DATABASE
REFERENCE DATABASE
OPC CLIENT
quantum OPC SERVER PCS
YOKOGAWA
DCS Introduction CS 3000 – Integrated Control System Overview Advanced , Flexible Operator Functions Powerful Control Station Features Flexibility in Engineering Integrated Solutions – Extended Applications Unique Advantages leading to Lower TCO
Quick & High-quality configuration ❚ The time for newly plant construction or reconstruction should be minimum. ❙ The longer time links the larger financial disadvantage.
❚ R3 provides the following configuration environment. ❙ Total Project management. ❙ Advance Debugging. ❘ You need not wait the hardware delivery or field wiring construction.
❙ Reuse of configuration data ❘ This is available between several stations or between several plants.
❙ ❙ ❙ ❙
Unified configuration operation with LOOK&FEEL. Several engineers can work at the same time. On-line maintenance. Pinpoint help viewer.
Concurrent engineering ❚ Several engineers can work at the same time.
Only one database Back
Total Project management. All graphics, all control logic are in a database
❚ The application of all stations in a system is included in one database.
ooo
HIS No.1
HIS No.2
FCS No.1
ooo
FCS No.2 Back
Benefit of Project management. ❚ The application of all stations in a system is included in one database. ❙ At least 1 PC is required to generate whole over a system. ❘ You need not create same or similar graphics/sequences in front of each engineering PC.
❙ One PC (one configuration software) can handle several projects. ❙ You can reuse the application database of a plant to another plant by a project, by a station, by a graphic, by a control logic. ❘ This shortens the configuration time. ❘ This makes the configuration quality excellent because the copy source has been working well in an actual plant.
❙ Optimum management of application data is available.
Back
Advance Debugging. ❚ The delivery time of controller and construction time of field wiring is much longer than the delivery time of PC. ❙ If you can advance your configuration work only with PC, you can shorten your total configuration time. ❙ If you can advance your debugging work without actually connecting the controllers and field devices, you can shorten your total configuration time.
❚ Yokogawa provides the excellent debug functions. Virtual Test You can debug R3 configuration only with a PC.
Target Test You can debug R3 configuration without field wiring. Back
Advance Debugging Theory. ❚ Virtual test (only with PC) ❙ Check simple entry mistakes. ❙ Try new control logic. ❙ Check graphic work ❙ Operator training.
Normal operation is available.
Memory in PC FCS FCS Simulator
❚ Target test ( without wiring)
ooo ooo ooo
Virtual input is ❙ Check actual FCS CPU Virtual input is created from the created from the performance output from FCS output from FCS simulator. ❙ Check the actual relationship among each Only station. minimum check is needed
at start up !
HIS
For HIS, this pretends FCS
FCS memory Field Field devices devices Auto Auto wiring wiring
For FCS For FCS, this simulator, this pretends the pretends the actual plant. actual plant.
Start up Virtual !Target (Actual plant) test Actual plant
Reuse of configuration data. Tag 1 Tag 2 Tag 3
Export CSV file to use in MS-EXCEL. Import CSVthe file project to reuse. Reuse Reuse the graphic •Configuration tool is not needed Reuse logicwork in another project onlythe forcontrol simple entry
in another station Reuse the control logic in another project Reuse(Graphic the control logicavailable) is also in own station
Reuse the graphic in own station
ooo
Plant A (project A)
ooo
ooo
Plant B (project B)
Back
Unified configuration with LOOK&FEEL. Project Detail configuration (Each plant) for each
• Graphical configuration • FB in FCS and FF devices are handled in a same tool.
Each folder for each FCS
Drag&Drop enables Copy& paste
FB : Function Block
Each folder for each HIS
Example : Control logic
I/O specification ❚ Installation environment ❙ ❙ ❙ ❙
ISA G3 for corrosive environment Wide temperature range -20°C to 70°C Conformed to EMC, C-tick. Non-incendive for Explosion proof ❘ Class I, Div.2, Group A,B,C,D, T4
❚ Redundancy ❙ Available for all types (analog, digital, Fieldbus, Modbus)
❚ Replacement ability for the existing XL, V systems. ❙
Full compatible size, connection, and function.
Flexible Field Wiring. ❚ According to your plant, any I/O modules can be connected with direct connection or terminal board connection. ❚ Even in case of fieldbus, you can choose type.
Dedicated eithercable
Field wiring Terminal board
❚ Change the front blocks,
Field wiring
Flexible Field Wiring. For dual
For single Dedicated cable Terminal board
On-line maintenance. ❚ In your plant operation, sometimes you would like to modify or to add/remove your control logic or graphics. ❙ It is quite difficult (nearly impossible) to stop your controller frequently. ❙ You usually configured several control loops. While modifying one of loops, you do not want to effect the control of any other loops.
❚ R3 provides the “On-line maintenance” function to meet your above requirement. ❙ You need not stop your controller when you modify small parts of control logic, graphics, etc. ❙ Any other parts of control logic are effected by this modification, so the influence for your plant control is
Back
On-line maintenance. No effect No effect
Control logicNo effect
(1) R3 Controller is controlling the plant with its control logic.
No effect
(2) You modify one of control loops. (or sequence logic etc.) Only this loop is stopped. Others are going on working. (3) Modified item loop is retrieved online to actual control without any effect to other loops. (4) In this term, CPU of controller never stops. Controller CPU
is Non-stop !
No effect
ooo
Controlling
No effect
Life Cycle Benefits Efficient Engineering Function of CS 3000
Local Engineering Force
Short Engineering Period
Reasonable Engineering Pricing Maintenance Service
Hardware maintenance System upgrade Remote Maintenance
Reduce Customer’s Total Cost of Ownership in Life Cycle Additional Service
ETS capability
System Integration Service Network Engineering Service APC/AOA/PRM/PIMS
Software support Sub system support Tuning & Control Solutions
R3 Summary & Benefits (1) HIS Cost Effective LCD Displays, Win 2000: More Open to IT, Dual Monitor, Web monitoring, Low cost ITV Interfacing
FIO Very Cost Effective, High Density & Compact I/O Simple and low Engineering & Construction cost, Application and Budget based Flexibility in Selection, Cost cutting in field wiring on top of Fieldbus More immune towards Corrosion & Temperature Redundant modules even for Fieldbus Migration Friendly
R3: Fieldbus & PRM Hi density Module, Integrated Engineering, Maintenance Management
R3 Summary & Benefits (2) APCS - Station A Cost Effective station for Advanced Regulatory Control and Exacoast, Reduce load on FCSs, Compliments and Supplements Exasmoc and Exarqe based APC
AOA (Exaplog & Exapilot) & APC (Exasmoc & Exarqe) Seamlessly Integrated (Almost embedded like) in System
R3: Fully Loaded with IT Power PIMS, MES and Enterprise Integration
R3 Summary & Benefits (3) R3: Better than Hybrid Systems R3 is a Cost Effective Complete DCS solution against
V & XL Migration A special FCS (RFCS2) is available for V & XL migration, Field Wiring is not affected, Phase wise and/or Customer’s budget wise plan can be offered. Benefits of FIO, Win2000 HIS, FCS, APC & Fieldbus for Migrated system, Additional Benefits on MES & Enterprise Integration
Migration of Other Vendor DCS These Issues can be handled project by project. New Customer is benefited by R3 features.
View more...
Comments