Station Automation COM600 IEC Master (OPC) 3.3. User's Manual

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1 Station Automation C600 IEC

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3 1RS Issued: Version: E/ Station Automation C600 IEC Contents: 1. About this manual Copyrights Trademarks General Document conventions Use of symbols Terminology Abbreviations Related documents Document revisions Introduction Functional overview IEC 103 PC Server features Configuration About this section verview of configuration Building object tree General about building object tree Adding Gateway object Adding IEC103 PC Server object Adding IEC103 Channel objects Adding IEC103 Device objects Adding Logical Device objects Adding Logical Node objects Adding data objects Configuring objects General about configuring objects IEC103 PC Server properties Configuring IEC103 Channel properties Configuring IEC103 Device properties Data objects for status information General about data objects for status information Single point status (SPS) Double point status (DPS) Integer status (INS) Protection activation information (ACT) Directional protection activation information (ACD) Device name plate (DPL) Logical node name plate (LPL) Data objects for measurand information

4 IEC Station Automation C600 1RS General about data objects for measurand information easured value (V) Complex measured value (CV) WYE Delta (DEL) Data objects for controllable status information General about data objects for controllable status information Controllable single point (SPC) Controllable double point (DPC) Binary controlled step position information (BSC) peration About this section Activating C600 with new configurations IEC103 PC Server diagnostics onitoring and controlling IEC103 Channel Activity onitoring and controlling IEC103 Device communication Data object diagnostics Technical reference About this section IEC data modeling General about IEC data modeling Data objects for status information Single point status (SPS) Double point status (DPS) Integer status (INS) Protection activation information (ACT) Protection activation information (ACD) Device name plate (DPL) Logical node name plate (LPL) Data objects for measurand information easured value (V) Complex measured value (CV) WYE Delta (DEL) Data objects for controllable status information Controllable single point (SPC) Controllable double point (DPC) Binary controlled step position information (BSC) Attributes General about attributes Server attributes

5 1RS Station Automation C600 IEC IEC103 Channel attributes IEC103 Device attributes Status codes Index

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7 1RS Station Automation C600 About this manual IEC Copyrights The information in this document is subject to change without notice and should not be construed as a commitment by ABB y. ABB y assumes no responsibility for any errors that may appear in this document. In no event shall ABB y be liable for direct, indirect, special, incidental, or consequential damages of any nature or kind arising from the use of this document, nor shall ABB y be liable for incidental or consequential damages arising from use of any software or hardware described in this document. This document and parts thereof must not be reproduced or copied without written permission from ABB y, and the contents thereof must not be imparted to a third party nor used for any unauthorized purpose. The software or hardware described in this document is furnished under a license and may be used, copied, or disclosed only in accordance with the terms of such license. Copyright 2006 ABB. All rights reserved Trademarks ABB is a registered trademark of ABB Group. All other brand or product names mentioned in this document may be trademarks or registered trademarks of their respective holders General This manual provides thorough information on the IEC aster protocol (later referred to as IEC103 PC Server) and the central concepts related to it. You find instructions on to take it into use. The basic operation procedures are also discussed. Information in this user s manual is intended for application engineers who configure IEC103 PC Server. As a prerequisite, you should understand IEC protocol and the basic procedures in Station Automation Builder 600 (later referred to as SAB600). This user s manual is divided into following sections: 7

8 IEC Station Automation C600 1RS Introduction This section gives an overview of the IEC103 PC Server and states the system requirements to be met when using the client. Configuration In this section you find an overview of the configuration tasks and instructions on how to create and configure IEC103 PC Server related objects. peration This section covers the basic operation procedures you can carry out when transferring or activating Station Automation C600 (later referred to as C600) with new configurations. You are also given instructions on how to monitor and control the IEC103 communication. Technical reference This section contains a list of status codes and information about the IEC data modeling Document conventions The following conventions are used for the presentation of material: The words in names of screen elements (for example, the title in the title bar of a window, the label for a field of a dialog box) are initially capitalized. Capital letters are used for the name of a keyboard key if it is labeled on the keyboard. For example, press the ENTER key. Lowercase letters are used for the name of a keyboard key that is not labeled on the keyboard. For example, the space bar, comma key, and so on. Press CTRL+C indicates that you must hold down the CTRL key while pressing the C key (to copy a selected object in this case). Press ESC E C indicates that you press and release each key in sequence (to copy a selected object in this case). The names of push and toggle buttons are boldfaced. For example, click K. The names of menus and menu items are boldfaced. For example, the File menu. The following convention is used for menu operations: enuname > enu- Item > CascadedenuItem. For example: select File > New >. The Start menu name always refers to the Start menu on the Windows taskbar. System prompts/messages and user responses/input are shown in the Courier font. For example, if you enter a value out of range, the following message is displayed: 8

9 1RS Station Automation C600 IEC Entered value is not valid. The value must be You can be asked to enter the string IF349 in a field. The string is shown as follows in the procedure: IF349 Variables are shown using lowercase letters: sequence name 1.5. Use of symbols This publication includes warning, caution, and information icons that point out safetyrelated conditions or other important information. It also includes tip icons to point out useful information to the reader. The corresponding icons should be interpreted as follows. The electrical warning icon indicates the presence of a hazard which could result in electrical shock. The warning icon indicates the presence of a hazard which could result in personal injury. The caution icon indicates important information or warning related to the concept discussed in the text. It may indicate the presence of a hazard which could result in corruption of software or damage to equipment or property. The information icon alerts the reader to relevant facts and conditions. The tip icon indicates advice on, for example, how to design your project or how to use a certain function. 9

10 IEC Station Automation C600 1RS Terminology The following is a list of terms associated with C600 that you should be familiar with. The list contains terms that are unique to ABB or have a usage or definition that is different from standard industry usage. Term Alarm Alarms and Events; AE Data Access; DA Data bject; D Data Set Device Event Intelligent Electronic Device Logical Device; LD Logical Node; LN LN LN Application Guideline for substation automation; LAG PC PC item Property Report Control Block An abnormal state of a condition. An PC service for providing information about alarms and events to PC clients. An PC service for providing information about process data to PC clients. Part of a logical node object representing specific information, for example, status, or measurement. From an object-oriented point of view, a data object is an instance of a class data object. Ds are normally used as transaction objects; that is, they are data structures. The data set is the content basis for reporting and logging. The data set contains references to the data and data attribute values. A physical device that behaves as its own communication node in the network, for example, protection relay. Change of process data or an PC internal value. Normally, an event consists of value, quality, and timestamp. A physical IEC device that behaves as its own communication node in the IEC protocol. Representation of a group of functions. Each function is defined as a logical node. A physical device consists of one or several LDs. The smallest part of a function that exchanges data. An LN is an object defined by its data and methods. A communication protocol developed by Echelon. A proprietary method of ABB on top of the standard LN protocol. Series of standards specifications aiming at open connectivity in industrial automation and the enterprise systems that support industry. Representation of a connection to the data source within the PC server. An PC item is identified by a string <object path>:<property name>. Associated with each PC item are Value, Quality, and Time Stamp. Named data item. The report control block controls the reporting processes for event data as they occur. The reporting process continues as long as the communication is available. 10

11 1RS Station Automation C600 IEC Term SPA SPA device Substation Configuration Language; SCL ABB proprietary communication protocol used in substation automation. Protection and/or Control Product supporting the SPA protocol version 2.5 or earlier. XL-based description language for configurations of electrical substation IEDs. Defined in IEC standard Abbreviations The following is a list of abbreviations associated with C600 that you should be familiar with. See also 1.6, Terminology. Abbreviation AE ASDU BRCB DA DCD D GW HI IEC IED LAG LAN LD LK LN LSG NCC NV LE PC P&C RTS Alarms and Events Application Service Data Unit Buffered Report Control Block Data Access Data essage Code Definition Data bject Gateway, component connecting two communication networks together Human achine Interface International Electrotechnical Commission Intelligent Electronic Device LN Application Guideline for substation automation Local Area Network Logical Device Lonark interoperable device communicating in LonWorks network. In this document, the term is used for devices that do not support the ABB LN/LAG communication. Logical Node LN SPA Gateway Network Control Center Network Variable bject Linking and Embedding LE for Process Control Protection & Control Request To Send 11

12 IEC Station Automation C600 1RS Abbreviation SA SAB600 SCL SLD SNTP SAP RCB URCB XL Substation Automation Station Automation Builder 600 Substation Configuration Language Single Line Diagram Simple Network Time Protocol Simple bject Access Protocol Report Control Block Unbuffered Report Control Block extended arkup Language 1.8. Related documents Name of the manual C600 User s anual C600 HI Configuration anual RS number 1RS RS Document revisions Document version/date A/ B/ C/ D/ E/ Product revision History Document created Document revised Document revised Document revised Document revised 12

13 1RS Station Automation C600 Introduction IEC Functional overview The IEC103 PC Server provides methods for PC clients to exchange data with devices communicating via the IEC aster protocol. Figure IEC 103 PC Server system overview (1) NCC (Network Control Center) (2) C600 with IEC103 PC Server (3) Station Automation Builder 600 (SAB600) IEC_103_aster_protocol_a.jpg (4) Protection and control devices communicating through the IEC aster Protocol The IEC103 PC Server software has two parts: Engineering and diagnostic tools and the actual IEC103 PC Server. Engineering and diagnostic tools utilize the Station Automation Builder 600 (later referred to as SAB600) framework and provide the user interface for engineering and diagnosing the IEC103 PC Server. The IEC103 PC Server handles the data transfer and conversion between the IEC103 protocol and PC interfaces. To create a common and protocol independent data interface between the PC server and client, the process data from the IEC103 devices is remodeled using the IEC data modeling. 13

14 IEC Station Automation C600 1RS The configuration data is stored in the SCL format. After the IEC103 PC Server has been launched, it reads the configuration file and establishes communication with the IEC103 devices through the IEC103 protocol stack. Configured IEC103 devices and data modeled according to the IEC model (see 5.2.1, General about IEC data modeling) are then exposed to PC clients through a Data Access (DA) server IEC 103 PC Server features The IEC 103 PC Server supports the following features: PC Data Access v. 1.0/2.0 PC Alarms and Events specifications v IEC data modeling System supervision: IEC103 channel communication IEC103 device communication Supported IEC103 data types and functions: Event-based indications Event based and cyclically updated measurements General commands Time synchronization 14

15 1RS Station Automation C600 Configuration IEC About this section This section guides you in the configuration tasks required before you can start using the IEC103 PC Server. For information on the IEC data modeling, refer to C600. Start SAB600 to open and name a project. 1. Select File > pen/anage Project In the pen/anage Project dialog, select the required location for the project: Projects on my computer Projects on network 3. Select New Project on the left. Enter a Project Name. The is optional. 4. Click Create. 5. Click pen Project verview of configuration Before you can start using the IEC103 PC Server, you need to build and configure an object tree in SAB600 to define the Communication structure. The possible objects are: Gateway IEC103 PC Server IEC103 Channel IEC103 IED Logical Device objects Logical Node objects Data objects Figure shows an example view of SAB600 including an object tree in the communication structure on the left and bject Properties window displaying the object properties on the right. When configuring PC servers the following characters cannot be used in object names: \ ` ' ' # 15

16 IEC Station Automation C600 1RS IEC103_configuration_overview.bmp Figure Example view of SAB600 The configuration work can basically be divided into two separate tasks: 1. building an object tree, and 2. configuring object properties. First, you need to build an object tree. This is done by adding objects to the object tree, see 3.3.1, General about building object tree. Connectivity Packages for certain Protection and Control products usually contain preconfigurations and tools to facilitate the building of the object tree. Figure shows an example of how the object tree may look like after it has been built. In the example tree you can see the IEC103 PC Server object and its child objects like channels, devices, and data objects. Indentation is used to indicate the parent-child relationship between the objects. After you have added the necessary objects to the object tree in the communication structure, you need to configure them, see 3.4.1, General about configuring objects. Table describes the objects shown in the object tree (Figure ). 16

17 1RS Station Automation C600 IEC Table IEC103 Server related objects bject IEC103 PC Server IEC103 Channel IEC103 IED Logical Device (LD) Logical Node (LN) Data bject (D) An object representing the IEC103 PC Server. An object representing a physical communication channel. You can define up to three channels per PC server. An object representing a physical device. You should not have more than 30 devices per each channel. An object representing a group of functions. Each function is defined as a Logical Node. A physical device consists of one or several LDs. An object defined by its data and methods. LN is the smallest part of a function that exchanges data. Data object is an instance of one of the IEC Data bject Classes such as Single point status and easured Value. Depending on the class, each data object has a set of attributes for monitoring and controlling the object, e.g. value, quality, and control Building object tree General about building object tree The object tree is built in the Communication structure of SAB600, see Figure It is built by adding objects in a logical order starting from the Gateway. You have several possible ways to add objects to the object tree: You can right-click the object to which you want to add a child object. Select New > bject type group > bject name, for example New > IEC103 > IEC103 > IED. You can right-click the object type and select New > New. A New bject window appears. Select the object type you want to add and click K or double-click it. You can copy the object. Add the objects in the following order: 1. Gateway 2. IEC103 PC Server 3. IEC103 Channel 4. IEC103 Device 5. Logical Device objects 6. Logical Node objects 7. Data objects For information on building a substation structure, refer to C600 HI Configuration anual. 17

18 IEC Station Automation C600 1RS Adding Gateway object To start building the object tree, add a Gateway object in the Communication structure by selecting the project name, right-click it and select New > Communication > Gateway Adding IEC103 PC Server object After the Gateway object has successfully been added, you can continue building the object tree by adding an IEC103 PC Server object. To add an IEC103 PC Server object: 1. Select the Gateway object in the communication structure and right-click it. 2. Add an IEC103 PC Server object. By using the SCL Import function, it is possible to import an entire server s or individual device's configurations without having to insert them manually. To open the SCL Import function, right-click the desired object, and select SCL Import. For more information about the SCL Import function, see C600. Connectivity Packages for certain protection and control devices can also support other ways to build this structure, depending on the configuration of an individual device, for example device-related object types and wizards. Typically, Connectivity Packages include SCL description files which must be installed. For further information on these Connectivity Packages, see the Connectivity Package of a certain device in the product documentation Adding IEC103 Channel objects To add an IEC103 Channel object: 1. Select an IEC103 PC Server object and right-click it. 2. Add an IEC103 Channel object. 3. Rename the new object. The names of the IEC103 Channels have to be unique Adding IEC103 Device objects To add an IEC103 Device object: 1. Select an IEC103 Channel object and right-click it. 2. Add an IEC103 Device object. 3. Rename the new object. The names of the IEC103 Devices within an IEC103 PC Server have to be unique. 18

19 1RS Station Automation C600 IEC Adding Logical Device objects To add a Logical Device object: 1. Select an IEC103 Device object and right-click it. 2. Add a Logical Device object. 3. Rename the new object. The names of the Logical Device objects have to be unique. Each IEC103 physical device must have at least one Logical Device object as a child object Adding Logical Node objects To add a Logical Node: 1. Select a Logical Device object and right-click it. 2. Add a Logical Node object. 3. Rename the new object. The names of the Logical Node objects have to be unique. You should have only one Logical Node 0 (LLN0) as a child object to a Logical Device object Adding data objects To add a data object: 1. Select a Logical Node object and right-click it. 2. Add a data object. 3. Rename the new object. The names of the data objects have to be unique Configuring objects General about configuring objects After the objects have been added, configure the object properties. Figure shows an example of how to use SAB600 to configure the object properties for IEC103 Device. To configure an object: 1. Select an object in the object tree of the communication structure. a. The object properties appear now in the bject Properties window. The properties and their values can be viewed as shown in Figure

20 IEC Station Automation C600 1RS Figure Example of object properties in the bjects Properties window IEC103_bj_Prop.bmp 2. Select the property you want to configure. Depending on the property value type, configuring is always done either by selecting a predefined value from a drop-down menu, or entering a text string or a numerical value in a text field. The available properties for different objects are listed in the following subsections IEC103 PC Server properties Table lists the IEC103 PC Server properties, their value ranges, defaults, and descriptions. These properties are not configurable. Table IEC103 PC Server properties Name Basic AE Prog ID DA Prog ID Value or Value range/ Default Default: None Default: None Prog ID for PC Alarm and Event Server Prog ID for PC Data Access Server 20

21 1RS Station Automation C600 IEC Configuring IEC103 Channel properties The IEC103 Channel properties that can be configured and value ranges for them can be found in Table The actual configuration by using SAB600 is performed as described in 3.4.1, General about configuring objects. Table IEC103 Channel properties Name Basic In Use Communication Port Bit Rate Communication Port Parity Communication Control Carrier Blocking CTS Delay Header Timeout Ignore the DFC bit Value or Value range/ Default In Use Not In Use Default: In Use 300 bits/s 600 bits/s 1200 bits/s 2400 bits/s 4800 bits/s 9600 bits/s bits/s Default: bits/s C1...C4 Default: C1 No parity check dd parity Even parity Default: No parity check Carrier Detect ignored Carrier Detect must be set Default: Carrier Detect must be set Default: Default: 2000 True False Default: False Controls whether the device communication is initially in use or not. Transmission rate used on the line Serial port used by the IEC protocol Specifies the used parity check. Usage of DCD signal of the serial port CTS waiting delay in milliseconds aximum waiting time of a link layer response in milliseconds Ignore the DFC bit. If true, master continues polling normally. If false, master sends the request status of link until the remote station clears the DFC bit. 21

22 IEC Station Automation C600 1RS Name Receiver Interrupt Delay Response Timeout RTS Keep Up RTS Keep Up Delay Time Synchronization Interval Transmission Wait Delay Polling Enquiry Limit ne link, one station poll Polling Delay Polling Limit Polling Period Reply Poll Count Secondary Polling Limit Value or Value range/ Default Default: Default: 2 Default: Default: Default: Default: 0 Default: 3 True False Default: False Default: Default: Default: Default: Default: 0 Delay of the receiving activation in milliseconds aximum waiting time of a link layer response in seconds RTS keep up padding characters Keep up delay of the RTS Time synchronization interval in seconds Transmission wait delay after given CTS in milliseconds of times that a message is retransmitted. ne link, one station poll. If true, master infinitely polls the first link which responds (typically used with dial-up). If false, all the links are polled normally. Delay between polling messages in milliseconds Limits the number of successive polls of a device. The polling frequence of a suspended station The reply polling specifies the number of successive polls to a station where a command has been sent. Limits the number of successive class 2 polls of a device. The value must be smaller than the value of Polling Lmit. 22

23 1RS Station Automation C600 IEC Configuring IEC103 Device properties Table lists the value ranges and/or default values for the IEC103 Device properties that you can define. The actual configuration by using SAB600 is performed as described in 3.4.1, General about configuring objects. Table IEC103 Device properties Name Basic Diagnostics Enabled In Use Simulation ode Addresses Polling Address Station Address Communication Control Complete Event Time Tag From Internal Clock Confirmation Timeout Prevents Automatic Sending of General Interrogation Reply Timeout Value or Value range/ Default True False Default: False In Use Not In Use Default: In Use True False Default: False Default: 1 Default: 1 True False Default: True Default: 60 True False Default: True Default: 10 Specifies whether diagnostic AE events are sent for the device. Controls whether the device communication is initially in use or not. Specifies whether the device is in simulation mode or not. Station polling address Common address of ASDU Completion of event time tag by adding year, date, and hour. If true, event time tags are completed based on the internal clock of the master. If false, time tags are completed based on clock information sent by the slave. Command confirmation timeout in seconds Sending of general interrogation. If true, GI is not sent. If false, GI is sent always when communication is (re)established successfully. Link layer command acknowledgment timeout in seconds 23

24 IEC Station Automation C600 1RS Name Time Synchronization Interval Control Authorization Station/Remote Switch PC Path PC Alarm and Event Device Connection status Class Value or Value range/ Default Default: 15 Default: None Default: Device Connection Status Time synchronization interval in seconds PC path of the station remote switch position is used with this device. The format is Node#ProgID For PC Server#Channel Name\IED Name\Logical Device Name\Logical Node Name\Data bject Name e.g. GW#ABB.IEC103_PC_DA_Server.Instance[1]#Channel1\IED1\LD1\GGI1\loc Device connection status class definition used with current device Data objects for status information General about data objects for status information There are seven different data objects providing status information: , Single point status (SPS) , Double point status (DPS) , Integer status (INS) , Protection activation information (ACT) , Directional protection activation information (ACD) , Device name plate (DPL) , Logical node name plate (LPL) The parameters are stored in bject Properties of SAB600, see the tables for each data object type. The actual configuration using SAB600 is performed as described in 3.4.1, General about configuring objects Single point status (SPS) Table Configurable SPS properties for PC servers Property/Parameter Basic Value or Value range/ Default 24

25 1RS Station Automation C600 IEC Property/Parameter Common Data Class Addresses Indication Function Indication Information Scale and Unit Scale Value or Value range/ Default SPS Default: 101 Default: 105 Default: None Common data class according to IEC IEC103 indication function type IEC103 indication information number Scale to be used with this data object Double point status (DPS) Table Configurable DPS properties for PC servers Property/Parameter Basic Common Data Class Addresses Indication Function Indication Information Scale and Unit Scale Value or Value range/ Default DPS Default: 101 Default: 105 Default: None Common data class according to IEC IEC103 indication function type IEC103 indication information number Scale to be used with this data object Integer status (INS) Table Configurable DPS properties for PC servers Property/ Parameter Basic Common Data Class Value or Value range / Default INS Common data class according to IEC

26 IEC Station Automation C600 1RS Property/ Parameter Addresses Indication Function Indication Index Indication Information Scale and Unit Scale Value or Value range / Default Default: Default: 1 Default: 105 Default: None IEC103 indication function type IEC103 indication index IEC103 indication information number Scale to be used with this data object Protection activation information (ACT) Table Configurable ACT properties for PC servers Property/Parameter Basic Common Data Class General Addresses General Function General Information Phase A Addresses Phase A Function Phase A Information Phase B Addresses Phase B Function Value or Value range/ Default ACT Default: 160 Default: 144 Default: 160 Default: 144 Default: 160 Common data class according to IEC IEC103 function type for general IEC103 information number for general IEC103 function type for phase A IEC103 information number for phase A IEC103 function type for phase B 26

27 1RS Station Automation C600 IEC Phase B Information Phase C Addresses Phase C Function Phase C Information Neutral Addresses Neutral Function Neutral Information Value or Value range/ Default Default: 144 Default: 160 Default: 144 Default: 160 Default: 144 IEC103 information number for phase B IEC103 function type for phase C IEC103 information number for phase C IEC103 function type for neutral IEC103 information number for neutral Directional protection activation information (ACD) Table Configurable ACD properties for PC servers Property/Parameter Property/Parameter Basic Common Data Class General Addresses General Function General Information Phase A Addresses Phase A Function Phase A Information Value or Value range/ Default ACD Default: 160 Default: 144 Default: 160 Default: 144 Common data class according to IEC IEC103 function type for general IEC103 information number for general IEC103 function type for phase A IEC103 information number for phase A 27

28 IEC Station Automation C600 1RS Property/Parameter Phase B Addresses Phase B Function Phase B Information Phase C Addresses Phase C Function Phase C Information Neutral Addresses Neutral Function Neutral Information Value or Value range/ Default Default: 160 Default: 144 Default: 160 Default: 144 Default: 160 Default: 144 IEC103 function type for phase B IEC103 information number for phase B IEC103 function type for phase C IEC103 information number for phase C IEC103 function type for neutral IEC103 information number for neutral Device name plate (DPL) Table Configurable DPL properties for PC servers Property/ Parameter Basic Common Data Class Addresses Indication Function Indication Information Vendor Vendor Hardware Revision Value or Value range/ Default DPL Default: 101 Default: 105 Default: ABB Common data class according to IEC IEC103 indication function type IEC103 indication information number A simple textstring, describing the vendor. 28

29 1RS Station Automation C600 IEC Property/ Parameter Hardware Revision Software Revision Software Revision Serial Serial Location Location Value or Value range/ Default Default: 0 Default: 0 Default: 0 Default: 0 A simple textstring, describing the hardware revision. A simple textstring, describing the software revision. A simple textstring, describing the serial number. A simple textstring, describing the location Logical node name plate (LPL) Table Configurable LPL properties for the PC servers Property/ Parameter Basic Common Data Class Addresses Indication Function Indication Information Vendor Vendor Software Revision Software Revision Value or Value range/ Default LPL Default: 101 Default: 105 Default: ABB Default: 0 Default: 0 Common data class according to IEC IEC103 indication function type IEC103 indication information number A simple textstring, describing the vendor. A simple textstring, describing the software revision. A simple textstring, describing the description for logical node. 29

30 IEC Station Automation C600 1RS Data objects for measurand information General about data objects for measurand information There are four different data objects providing measurand information: , easured value (V) , Complex measured value (CV) , WYE , Delta (DEL) The parameters are stored in bject Properties of SAB600, see the tables for each data object type. The actual configuration using SAB600 is performed as described in 3.4.1, General about configuring objects easured value (V) Table Configurable V properties for PC servers Property/ Parameter Basic Common Data Class Addresses Indication Function Indication Index Indication Information Scale and Unit Scale Value or Value range / Default V Default: Default: 1 Default: 105 Default: None Common data class according to IEC IEC103 indication function type IEC103 indication index IEC103 indication information number Scale to be used with this data object Complex measured value (CV) Table Configurable CV properties for PC servers Property/ Parameter Basic Value or Value range / Default 30

31 1RS Station Automation C600 IEC Property/ Parameter Common Data Class Addresses Indication Function Indication Index Indication Information Scale and Unit Scale Value or Value range / Default CV Default: Default: 1 Default: 105 Default: None Common data class according to IEC IEC103 indication function type IEC103 indication index IEC103 indication information number Scale to be used with this data object WYE Table Configurable WYE properties for PC servers Property/Parameter Basic Common Data Class Phase A Addresses Phase A Function Phase A Index Phase A Information Phase B Addresses Phase B Function Phase B Index Value or Value range/ Default WYE Default: Default: 1 Default: 144 Default: Default: 2 Common data class according to IEC IEC103 function type for phase A IEC103 index for phase A IEC103 information number for phase A IEC103 function type for phase B IEC103 index for phase B 31

32 IEC Station Automation C600 1RS Property/Parameter Phase B Information Phase C Addresses Phase C Function Phase C Index Phase C Information Neutral Addresses Neutral Function Neutral Index Neutral Information Scale and Unit Neutral Scale Phase Scale Value or Value range/ Default Default: 144 Default: Default: 3 Default: 144 Default: Default: 4 Default: 144 Default: None Default: None IEC103 information number for phase B IEC103 function type for phase C IEC103 index for phase C IEC103 information number for phase C IEC103 function type for neutral IEC103 index for neutral IEC103 information number for neutral Scale to be used with neutral for this data object Scale to be used with phases for this data object Delta (DEL) Table Configurable DEL properties for PC servers Property/ Parameter Basic Common Data Class Phase AB Addresses Value or Value range/ Default DEL Common data class according to IEC

33 1RS Station Automation C600 IEC Property/ Parameter Phase AB Function Phase AB Index Phase AB Information Phase BC Addresses Phase BC Function Phase BC Index Phase BC Information Phase CA Addresses Phase CA Function Phase CA Index Phase CA Information Scale and Unit Phase Scale Value or Value range/ Default Default: Default: 1 Default: 144 Default: Default: 2 Default: 144 Default: Default: 3 Default: 144 Default: None IEC103 function type for phase AB IEC103 index for phase AB IEC103 information number for phase AB IEC103 function type for phase BC IEC103 index for phase BC IEC103 information number for phase BC IEC103 function type for phase CA IEC103 index for phase CA IEC103 information number for phase CA Scale to be used with phases with this data object Data objects for controllable status information General about data objects for controllable status information There are three different data objects providing controllable status information: , Controllable single point (SPC) , Controllable double point (DPC) , Binary controlled step position information (BSC) 33

34 IEC Station Automation C600 1RS The parameters are stored in bject Properties of SAB600, see the tables for each data object type. The actual configuration using SAB600 is performed as described in 3.4.1, General about configuring objects Controllable single point (SPC) Table Configurable SPC properties for PC servers Property/ Parameter Basic Common Data Class Subtype of the current data object: Same command and indication addresses Addresses Command ASDU Command Function Command Information Subtype of the current data object: Separate command and indication addresses Addresses Command ASDU Command Function Command Information Indication Function Value or Value range/ Default SPC Default: 20 Default: 101 Default: 105 Default: 20 Default: 101 Default: 105 Default: 101 Common data class according to IEC IEC103 command ASDU type IEC103 command function type IEC103 command information number IEC103 command ASDU type IEC103 command function type IEC103 command information number IEC103 indication function type 34

35 1RS Station Automation C600 IEC Property/ Parameter Indication Information Value or Value range/ Default Default: 105 IEC103 indication information number Controllable double point (DPC) Table Configurable DPC properties for PC servers Property/ Parameter Basic Common Data Class Subtype of the current data object: Same command and indication addresses Addresses Command ASDU Command Function Command Information Subtype of the current data object: Separate command and indication addresses Addresses Command ASDU Command Function Command Information Value or Value range/ Default DPC Default: 20 Default: 101 Default: 105 Default: 20 Default: 101 Default: 105 Common data class according to IEC IEC103 command ASDU type IEC103 command function type IEC103 command information number IEC103 command ASDU type IEC103 command function type IEC103 command information number 35

36 IEC Station Automation C600 1RS Property/ Parameter Indication Function Indication Information Value or Value range/ Default Default: 101 Default: 105 IEC103 indication function type IEC103 indication information number Binary controlled step position information (BSC) Table Controllable BSC properties for PC servers Property/ Parameter Basic Common Data Class Subtype of the current data object: Same command and indication addresses Addresses Command ASDU Command Function Command Information Scale and Unit Scale Subtype of the current data object: Separate command and indication addresses Addresses Command ASDU Value or Value range/ Default BSC Default: 20 Default: 101 Default: 105 Default: None Default: 20 Common data class according to IEC IEC103 command ASDU type IEC103 command function type IEC103 command information number Scale to be used with this data object IEC103 command ASDU type 36

37 1RS Station Automation C600 IEC Property/ Parameter Command Function Command Information Indication Function Indication Index Indication Information Scale and Unit Scale Value or Value range/ Default Default: 101 Default: 105 Default: Default: 1 Default: 105 Default: None IEC103 command function type IEC103 command information number IEC103 indication function type IEC103 indication index IEC103 indication information number Scale to be used with this data object 37

38 IEC Station Automation C600 1RS peration 4.1. About this section This section describes the basic operation procedures you can carry out after the IEC103 PC Server has been configured. After this, you can, for example, monitor and control the condition of connections in an IEC103 network. This is done by using the nline diagnostics function in SAB Activating C600 with new configurations For information about activating C600 with new configuration, see C600 User s anual IEC103 PC Server diagnostics To view the IEC103 PC Server diagnostics, right-click the IEC103 PC Server object and select nline diagnostics, see Figure Figure IEC103 PC Server nline diagnostics You have the following alternatives: to view version information to reset the IEC103 PC Server to view the event log file, see Figure to clear the log file IEC103_PC_Server_nline_diagnostics.jpg 38

39 1RS Station Automation C600 IEC Figure Event log file Eventlog_103.jpg Diagnostic AE Client Diagnostic events can be monitored and controlled using the Diagnostic AE Client function, see Figure Click Refresh to update the status information. To be able to receive events from a certain device, diagnostic events must be enabled for this respective device. To enable diagnostic events: 1. Right-click the device. 2. Select nline diagnostics. 3. ark the Diagnostic events enabled check box. See Figure for example. Figure IEC103 PC Server Diagnostic AE client IEC103_PC_Server_Diagnostic_AE_client.jpg 39

40 IEC Station Automation C600 1RS onitoring and controlling IEC103 Channel Activity The IEC103Channel activity can be monitored with the nline diagnostics function. You can also take a channel into use or out of use as described in this section. To monitor and control IEC103 Channel activity: 1. Select the channel you want to monitor in the object tree of SAB Right-click the channel. 3. Select nline diagnostics. Figure IEC103 nline diagnostics IEC103_Channel_nline_Diagnostics.jpg In the Diagnostic counters field, you can monitor the channel activity. The available attributes can be seen in Figure To reset Diagnostic counters, click Reset counters. You can take an IEC103Channel into use by marking the In use check box. If you unmark the check box, the channel is taken out of use. Diagnostic counters are updated every 2 seconds. To update them manually, click Refresh. 40

41 1RS Station Automation C600 IEC onitoring and controlling IEC103 Device communication The IEC103 device communication can be monitored with the nline diagnostics function. You can also take a device or module into use or out of use as described in this section. To monitor and control IEC103 Device communication: 1. Select the device/ module you want to monitor in the object tree of SAB Right-click the device/module. 3. Select nline diagnostics. In the Status information field, you can monitor the device status. The Diagnostic counters field provides information on device activity. To reset diagnostic counters, click Reset counters. You can take an IEC103 device into use by marking the In use check box. If you unmark the check box, the device is taken out of use. Diagnostic counters are updated every 2 seconds. To update them manually, click Refresh. Figure IEC103 Device nline diagnostics IEC103_Device_nline_diagnostics.jpg 4.6. Data object diagnostics For information on data object diagnostics, refer to C600 User s anual. 41

42 IEC Station Automation C600 1RS Technical reference 5.1. About this section This section provides reference information about the following issues: IEC data modeling Attributes Status codes 5.2. IEC data modeling General about IEC data modeling The relationship between the IEC data modeling and IEC103 PC Server is described in this section. For each data class, there is a table giving a detailed description about the relation between the IEC103 data and IEC data object attributes and services. The tables also describe how the data is presented on the PC Server name space. The columns in the tables have the following content types: Name specifies the PC item name of the attribute/service. specifies the IEC type of the attribute. Value/ Value range specifies the allowed values and ranges of the attribute/service. andatory/ptional specifies whether the attribute is considered as mandatory or optional according to the IEC standard. PC data types specify the PC data type used for the PC item Data objects for status information Single point status (SPS) SPS represents ASDUs 1 and 2. Table Single point status (SPS) information Name Value/ Value range andatory /ptional Protocol information element PC data types stval BLEAN TRUE FALSE DPI (1: FF, 2: N) VT_BL q Quality Time Validity VT_I4 t TimeStamp CP32 VT_DATE 42

43 1RS Station Automation C600 IEC Name Value/ Value range andatory /ptional Protocol information element PC data types d Text VT_BSTR Double point status (DPS) DPS represents ASDUs 1 and 2. Table Double point status (DPS) information Name Value/ Value range andatory/ ptional Protocol information element PC data types stval CPT Intermediate-state (0) DPI VT_I4 off(1) on(2) bad-state(3) q Quality Time Validity VT_I4 t TimeStamp Full_Timestamp CP32 VT_DATE d Text VT_BSTR Integer status (INS) INS represents ASDUs 3, 4 and 9. Table Integer status (INS) information Name Value/ Value range andatory/ptional Protocol information element PC data types stval INTEGER VAL, SCL VT_I4 q Quality ER, V, time validity VT_I4 t TimeStamp CP32 VT_DATE d Text VT_BSTR Protection activation information (ACT) ACT represents ASDUs 1 and 2. 43

44 IEC Station Automation C600 1RS Table Proptection activation information (ACT) Name Value/ Value range andatory/ptional Protocol information element PC data types general BLEAN DPI (1:FF, 2:N) VT_BL phsa BLEAN DPI (1:FF, 2:N) VT_BL phsb BLEAN DPI (1:FF, 2:N) VT_BL phsc BLEAN DPI (1:FF, 2:N) VT_BL neut BLEAN DPI (1:FF, 2:N) VT_BL q Quality ER, V, Time Validity VT_I4 IV, NT, SB, BL, V t TimeStamp CP32 d Text VT_BSTR Protection activation information (ACD) ACD is configured the same way as ACT since IEC103 does not support direction information. All direction item tags (dir*) always have the direction value unknown and PC data type VT_I Device name plate (DPL) DPL represents ASDU 5. Table Device name plate (DPL) information Name Value/ Value range andatory/ptional Protocol information element PC data types vendor VisibleString ASC chars [1...8] VT_BSTR hwrev VisibleString VT_BSTR swrev VisibleString ASC chars [9...12] VT_BSTR sernum VisibleString VT_BSTR location VisibleString VT_BSTR Logical node name plate (LPL) LPL represents ASDU 5. 44

45 1RS Station Automation C600 IEC Table Logical node name plate (LPL) information Name Value/ Value range andatory/ptional Protocol information element PC data types vendor VisibleString ASC chars [1...8] VT_BSTR swrev VisibleString ASC chars [9...12] VT_BSTR d VisibleString VT_BSTR Data objects for measurand information easured value (V) V represents ASDUs 3, 4, and 9. Table easured value (V) information Name Value/Value range andatory/ptional Protocol information element PC data types mag AnalogueValue VAL, SCL VT_R4 range Range VT_I4 q Quality ER, V, time validity VT_I4 t TimeStamp CP32 VT_DATE rangec RangeConfig See RangeConfig units Unit Config See Unit d Text VT_BSTR Complex measured value (CV) CV represents ASDUs 3, 4 and 9. Name Value/ Value range andatory/ptional Protocol information element PC data types cval.mag AnalogueValue VAL, SCL VT_R4 range Range VT_I4 q Quality ER, V, time validity VT_I4 t TimeStamp CP32 VT_DATE rangec RangeConfig units Unit Config 45

46 IEC Station Automation C600 1RS Name Value/ Value range andatory/ptional Protocol information element PC data types d Text VT_BSTR WYE WYE represents ASDUs 3, 4 and 9. Table WYE information Name Value/ Value range andatory/ptional Protocol information element PC data types phsa CV See CV See CV phsb CV See CV See CV phsc CV See CV See CV neut CV See CV See CV d Separate signal VT_BSTR Delta (DEL) DEL represents ASDUs 3, 4 and 9. Table Delta (DEL) information Name Value/ Value range andatory/ptional Protocol information element PC data types phsab CV See CV See CV phsbc CV See CV See CV phsca CV See CV See CV d Text Separate signal VT_BSTR Data objects for controllable status information Controllable single point (SPC) SPC represents ASDU 20. Table SPC represents ASDU 20. Name Value/Value range andatory/ptional IEC103 information element PC data types ctlval BLEAN FALSE TRUE DC (1:FF, 2:N) VT_BL 46

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