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BS EN 62424:2009 2010

$215.11

Representation of process control engineering. Requests in P&I diagrams and data exchange between P&ID tools and PCE-CAE tools

Published By Publication Date Number of Pages
BSI 2010 140
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This International Standard specifies how process control engineering requests are represented in a P&ID for automatic transferring data between P&ID and PCE tool and to avoid misinterpretation of graphical P&ID symbols for PCE.

It also defines the exchange of process control engineering request relevant data between a process control engineering tool and a P&ID tool by means of a data transfer language (called CAEX). These provisions apply to the export/import applications of such tools.

The representation of the PCE functionality in P&ID’S will be defined by a minimum number of rules to clearly indicate their category and processing function, independent from the technique of realization (see Clause 6). The definition of graphical symbols for process equipment (e. g. vessels, valves, columns, etc.), their implementation and rules for the reference designation system are not in the scope of this standard. These rules are independent from this standard.

Clause 7 specifies the data flow between the different tools and the data model CAEX.

PDF Catalog

PDF Pages PDF Title
6 CONTENTS
10 INTRODUCTION
11 Figures
Figure 1 โ€“ Information flow between P&ID and PCE tool
12 1 Scope
2 Normative references
3 Terms and definitions
16 4 Abbreviations
17 5 Conformity
Tables
Table 1 โ€“ Abbrevations
18 6 Representation of PCE requests in a P&ID
6.1 PCE request and PCE loop
19 6.2 Objectives and principles
6.3 Requirements for the identification and representation of PCE requests
Figure 2 โ€“ Organization of PCE requests
20 Figure 3 โ€“ General representation of a PCE-Request in a P&ID
Figure 4 โ€“ Multi-sensor element
21 Figure 5 โ€“ Local interface
Figure 6 โ€“ Manually operated switch in local control panel
Figure 7 โ€“ Pressure indication in central control room
22 Table 2 โ€“ PCE categories
23 Table 3 โ€“ PCE processing function
24 Table 4 โ€“ Sequence combinations
Table 5 โ€“ PCE processing functions for actuators
25 Figure 8 โ€“ Example of PCE request identification
Figure 9 โ€“ Example of flow measurement with indication in the CCR delivered by vendor A specified by typical A20
Figure 10 โ€“ Example of pH-measurement with indication in the CCR
26 Figure 11 โ€“ Example of flow measurement with indication in the CCR and high and low alarm
Figure 12 โ€“ Flow measurement with indication in the CCR and high alarm and a high-high switching function
Figure 13 โ€“ Flow measurement with indication in the CCR and a high-high switch limit, a high alarm, a low alarm and a low-low switch limit for a safety function
27 Figure 14 โ€“ GMP relevant, safety relevant and quality relevant flow measurement with indication in the CCR
Figure 15 โ€“ Control function
Figure 16 โ€“ Safety relevant control function
28 7 Neutral data exchange of PCE relevant P&ID information
7.1 Objectives
7.2 Meaning of P&ID elements
29 7.3 PCE relevant information of P&ID tools
Figure 17 โ€“ P&ID elements and associations (PCE relevant items are shown in dark lines)
30 7.4 Formal description of PCE relevant information of P&ID tools
Figureย 18 โ€“ Process data model (PCE relevant items are shown in dark lines)
32 Figure 19 โ€“ PCE request data model
34 Figure 20 โ€“ Example of two plant sections and a signal connection via external interfaces
Figure 21 โ€“ Simplified CAEX model of indirect links between PCE requests across different plant hierarchy items
35 Figure 22 โ€“ Example of two plant sections and a direct connection
36 Figure 23 โ€“ Simplified CAEX model of direct links between PCE requests across different plant hierarchy items
37 8 Additional PCE attributes
Table 6 โ€“ P&ID attributes relevant in PCE environment
Table 7 โ€“ Data handling attributes
38 Annex A (normative) CAEX โ€“ Data model for machine information exchange
Table A.1 โ€“ XML notation conventions
39 Table A.2 โ€“ CAEX data types and elements
44 Figure A.1 โ€“ CAEX architecture of a SystemUnitClass
Figure A.2 โ€“ Example of a SystemUnitClassLib
46 Figure A.3 โ€“ Examples of Attributes
48 Figure A.4 โ€“ Examples of an InterfaceClassLib
49 Figureย A.5 โ€“ Usage of Links
50 Figure A.6 โ€“ Example of a RoleClassLib
52 Figure A.7 โ€“ CAEX Role Concept
Figure A.8 โ€“ CAEX data definition for use case 1
53 Figure A.9 โ€“ CAEX data definition for use case 2
Figure A.10 โ€“ CAEX data definition for use case 3
55 Figure A.11 โ€“ CAEX data definition of a MappingObject
Figure A.12 โ€“ Example for a hierarchical plant structure
56 Figure A.13 โ€“ CAEX data structure
Figure A.14 โ€“ Distribution of data in several CAEX files
Figure A.15 โ€“ Referencing of external CAEX files
57 Figure A.16 โ€“ Example of how to use alias names
58 Figure A.17 โ€“ Multiple crossed structures
111 Annex B (informative) Examples of PCE requests
Figure B.1 โ€“ Local level indication, 1 process connection
Figure B.2 โ€“ Local level indication, 2 process connections
Figure B.3 โ€“ Local flow indication
Figure B.4 โ€“ Local pressure indication
Figure B.5 โ€“ Local temperature indication
112 Figure B.6 โ€“ Local control panel, pressure indication, high alarm
Figure B.7 โ€“ Local temperature indication, CCR temperature high alarm
Figure B.8 โ€“ Local pressure indication, CCR pressure high alarm and switch
Figure B.9 โ€“ CCR flow indication, device information: Orifice Plate
Figure B.10 โ€“ CCR pressure indication, low, low low and high alarm
113 Figure B.11 โ€“ CCR temperature indication and registration
Figure B.12 โ€“ CCR level indication and registration, 1 process connection
Figure B.13 โ€“ CCR level indication, 2 process connections
Figure B.14 โ€“ Two flow indications and flow ratio control in CCR
114 Figure B.15 โ€“ CCR flow indication and high alarm, flow control, control valve with extra interlock and open/close indication
Figure B.16 โ€“ Local pressure indication, CCR pressure indication, high alarm and high high safety relevant switch
Figure B.17 โ€“ Local pressure indication, CCR pressure indication, alarms and switches
Figure B.18 โ€“ CCR pressure indication, high and low alarm, safety relevant switch action on on/off valve
115 Figure B.19 โ€“ Switched valve with on/off indication and switching action, safety relevant switched valve
Figure B.20 โ€“ Pressure restriction
Figure B.21 โ€“ Flow restriction
116 Figure B.22 โ€“ PT compensated flow control, safety-relevant pressure switch (two out of three (2oo3) shutdown), switched control valve with on/off indication and switching action at open position
Figure B.23 โ€“ CCR temperature control, additional manual switch actions from CCR with indication and local control panel
117 Figure B.24 โ€“ Motor typical, local on/off control, CCR off control, current, fault with alarm and running indication
Figure B.25 โ€“ Multivariable controller
118 Figure B.26 โ€“ On/off valve with position indication
Figure B.27 โ€“ On/off valve with safety relevant switch and position indication
Figure B.28 โ€“ Level control with continuous controller
Figure B.29 โ€“ Level control with on/off switch
119 Figure B.30 โ€“ Cascade control for temperature as control input, flow control as follow-up controller
Figure B.31 โ€“ Safety directed high control to a subsequent valve, manual control for reset function and manual control for manual/automatic switch of the valve, valve with open/close indication and safety-relevant switch to subsequent valve
Figure B.32 โ€“ Flow control in CCR
Figure B.33 โ€“ Temperature control with high alarm and high switch
120 Figure B.34 โ€“ Manual control from CCR
Figure B.35 โ€“ Flow measurement with display and alarms in CCR, high high switch on process control function and switch on/off valve
Figure B.36 โ€“ Local P-/F-/T-/S- control without auxiliary power (stand-alone)
121 Annex C (normative) Full XML schema of the CAEX Model
130 Annex D (informative) CAEX modelling examples
Figure D.1 โ€“ Example CAEX interface library
131 Figure D.2 โ€“ Example CAEX role library
133 Figure D.3 โ€“ Example to be mapped with CAEX
134 Figure D.4 โ€“ CAEX model of the example described in Figure D.3
137 Bibliography
BS EN 62424:2009 2010
$215.11