ABB SPA-ZC 400 Installation And Commissioning Manual

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SPA-ZC 400
Ethernet Adapter
Installation and Commissioning Manual
Ethernet Adapter
Installation and Commissioning Manual
©Copyright 2004 ABB Oy, Distribution Automation, Vaasa, FINLAND 3
SPA-ZC 400
1MRS755347
Issued: 06.10.2004
Version: A/06.10.2004
1. About this manual .....................................................................7
1.1. Copyrights .....................................................................................7
1.2. Trademarks ...................................................................................7
1.3. General .........................................................................................7
1.4. Use of symbols ..............................................................................8
1.5. Document conventions ..................................................................9
1.6. Terminology ................................................................................10
1.7. Abbreviations ..............................................................................11
1.8. Related documents .....................................................................11
1.9. Document revisions .....................................................................12
1.10.Safety information .......................................................................12
2. Introduction .............................................................................13
2.1. SPA-ZC 400 Product Overview ...................................................13
2.2. Introduction to IEC 61850 standard ............................................14
2.3. SPA-ZC 400-BB and SPA-ZC 400-MM Product Overview .........14
2.4. SPA-ZC 400 Features .................................................................15
2.5. Ordering information ...................................................................16
2.5.1. SPA-ZC 400 product package .........................................16
3. Installation ...............................................................................19
3.1. Mechanical Installation ................................................................19
3.2. Communication Engineering Tool (CET) ....................................19
3.2.1. System requirements .......................................................19
3.2.2. Installing CET ...................................................................19
3.2.3. Uninstalling CET ..............................................................27
3.3. Installing Connectivity Packages .................................................27
3.3.1. Uninstalling Connectivity Packages .................................33
4. Engineering .............................................................................35
4.1. About this section ........................................................................35
4.2. Overview of engineering .............................................................35
4.3. Creating project ...........................................................................36
4.4. Configuring SPA-ZC 400 by using Connectivity Packages .........36
4.5. Building object tree ......................................................................37
4.5.1. Adding IEC 61850 Device object .....................................38
4.5.2. Adding Logical Device objects .........................................38
4.5.3. Importing IEC 61850 data object model of IED ................40
4.6. Configuring SPA-ZC 400 using imported CID file .......................41
4.7. Configuring SPA-ZC 400 using IEC 61850 data model
components .................................................................................42
4.8. Configuring communication parameters .....................................44
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4.8.1. SPA Communication parameters .................................... 45
4.9. Using Dataset Editor ................................................................... 47
4.10.Configuring report control blocks ............................................... 47
4.11.Downloading configuration and exporting CID file ..................... 50
4.12.Commissioning SPA-ZC 400 ..................................................... 51
4.12.1.Checking SPA communication ........................................ 51
4.12.2.Obtaining diagnostic data through ftp .............................. 52
5. Technical data ........................................................................ 53
5.1. Interfaces .................................................................................... 53
5.2. Test and conditions ..................................................................... 55
6. Maintenance and service ....................................................... 57
6.1. General about service .................................................................57
6.1.1. LED indicators ................................................................. 57
6.2. SPA-ZC 400 communication settings ......................................... 57
7. Technical reference ................................................................ 59
7.1. About this section .......................................................................59
7.2. ACSI conformance statement .................................................... 60
7.2.1. ASCI basic conformance statement ............................... 60
7.2.2. ACSI models conformance statement ............................. 60
7.2.3. ACSI service conformance statement ............................. 62
7.3. Model conformance statement ...................................................66
7.3.1. Common data attribute classes ....................................... 66
7.3.1.1. Quality ................................................................ 66
7.3.1.2. Analogue value .................................................. 67
7.3.1.3. Configuration of analogue value ........................ 67
7.3.1.4. Range configuration ...........................................67
7.3.1.5. Step position with transient indication ................ 68
7.3.2. Originator ......................................................................... 68
7.3.2.1. Unit definition ..................................................... 69
7.3.2.2. Vector definition ................................................. 69
7.3.3. Common data classes ..................................................... 69
7.3.3.1. Single point status (SPS) ................................... 69
7.3.3.2. Double point status (DPS) ................................. 70
7.3.3.3. Integer status (INS) ............................................ 71
7.3.3.4. Protection activation information (ACT) ............. 72
7.3.3.5. Directional protection activation information
(ACD) ................................................................. 73
7.3.3.6. Security violation counting (SEC) ...................... 74
7.3.3.7. Binary counter reading (BCR) ............................ 74
7.3.3.8. Measured value (MV) ........................................75
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7.3.3.9. Complex measured value (CMV) .......................77
7.3.3.10.Sampled value (SAV) .........................................78
7.3.3.11.WYE ...................................................................79
7.3.3.12.Delta (DEL) ........................................................80
7.3.3.13.Sequence (SEQ) ................................................81
7.3.3.14.Harmonic Value (HMV) ......................................81
7.3.3.15.Harmonic value for WYE (HWYE) .....................83
7.3.3.16.Harmonic value for DEL (HDEL) ........................84
7.3.3.17.Controllable single point (SPC) ..........................85
7.3.3.18.Controllable double point (DPC) ........................87
7.3.3.19.Controllable integer status (INC) ........................88
7.3.3.20.Binary controlled step position information
(BSC) .................................................................90
7.3.3.21.Integer controlled step position information
(ISC) ...................................................................91
7.3.3.22.Controllable analogue set point information
(APC) .................................................................93
7.3.3.23.Single point setting (SPG) ..................................94
7.3.3.24.Integer status setting (ING) ................................94
7.3.3.25.Analogue setting (ASG) .....................................95
7.3.3.26.Setting curve (CURVE) ......................................96
7.3.3.27.Device name plate (DPL) ...................................97
7.3.4. Logical node name plate (LPL) ........................................97
7.3.4.1. Curve shape description (CSD) .........................98
7.4. SCL conformance statement .......................................................99
7.5. SCL control block ......................................................................100
7.6. Protocol implementation conformance statement .....................101
7.6.1. Profile conformance .......................................................101
7.6.1.1. MMS conformance ...........................................101
7.6.1.2. GOOSE services ..............................................102
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1. About this manual
1.1. Copyrights
The information in this document is subject to change without notice and should not
be construed as a commitment by ABB Oy. ABB Oy assumes no responsibility for
any errors that may appear in this document.
In no event must ABB Oy be liable for direct, indirect, special, incidental or
consequential damages of any nature or kind arising from the use of this document,
nor must ABB Oy 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 Oy, 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 © 2004 ABB Oy
All rights reserved.
1.2. Trademarks
Registrations and trademarks used in this document include:
Windows: Registered trademark of Microsoft Corporation.
1.3. General
This manual provides thorough information on the SPA-ZC 400 Ethernet adapter
used for connecting REF 541/3/5, REM 543/5 and RET 541/3/5 Intelligent
Electronic Devices (IED) to IEC 61850 Station bus and the central concepts related
to it. You will find information on SPA-ZC 400 and its components, an introduction
to engineering tasks and a description of the basic operations.
Information in this manual is intended for application engineers, who install and
configure SPA-ZC 400. As a prerequisite, you should have basic knowledge of
IEC 61850 client and server architectures in general.
In this manual RE_54_ contains only REF 541/3/5, REM 543/5 and
RET 541/3/5 products.
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This manual is divided into following sections:
Chapter 2. Introduction
This section gives an overview of SPA-ZC 400, its components and functionality
and the engineering tool, and introduces the IEC 61850 data modeling principles.
Chapter 3. Installation
This section provides you with general information on installing the SPA-ZC 400
components.
Chapter 4. Engineering
In this section you will find an overview of engineering tasks of SPA-ZC 400.
Chapter 5. Technical data
This section provides you the SPA-ZC 400 technical data.
Chapter 6. Maintenance and service
In this section you will find information about self-diagnostics and troubleshooting
of SPA-ZC 400.
Chapter 7. Technical reference
This section defines the SPA-ZC 400 compliance to IEC 61850 in terms of service,
modeling and engineering interfaces.
1.4. Use of symbols
This publication includes caution and information where appropriate to point out
safety related or other important information. The corresponding symbols should be
interpreted as follows:
Caution icon indicates important information or warning related to
the concept discussed in the text. It might indicate the presence of a
hazard which could result in corruption of software or damage to
equipment or property.
Information icon alerts the reader to relevant facts and conditions.
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1.5. 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
dialog, 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 CTRL 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, Enter 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 OK.
The names of menus and menu items are boldfaced. For example, the File menu.
The following convention is used for menu operations: Menu Name > Menu
Item > Cascaded Menu Item. For example: select File > Open > New
Project.
•The Start menu name always refers to the Start menu on the Windows Task
Bar.
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:
Entered value is not valid. The value must be 0 to
30.
You may be told to enter the string MIF349 in a field. The string is shown as follows
in the procedure:
MIF349
Variables are shown using lowercase letters:
sequence name
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1.6. Terminology
The following is a list of terms associated with SPA-ZC 400 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 Description
Connectivity Package Software and description XML files to provide device
specific information about certain relays or device,
used to ease and simplify the engineering
SPA Data communication protocol developed by ABB
ST Connector type for glass fibre cable
Snap-in Connector type for plastic fibre cable
MT-RJ Connector type for glass fibre cable
Data Object (DO) 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. DOs are normally used
as transaction objects; i.e., they are data structures.
Data Set (DS) The data set is the content basis for reporting and
logging. The data set contains references to the data
and data attribute values.
Intelligent Electronic Device
(IED)
This includes devices containing advanced logics
such as meters, relays, and trip units. In this article
IED means a physical IEC 61850 device that behaves
as its own communication node in the IEC 61850
protocol.
Logical Device (LD) Representation of a group of functions. Each function
is defined as a logical node. A physical device has one
or several LDs.
Logical Node (LN) The smallest part of a function that exchanges data. A
LN is an object defined by its data and methods.
Report Control Block (RCB) The report control block controls the reporting process
for event data as they occur. The reporting process
continues as long as the communication is available.
sAddr Short Address Information
The sAddr attribute allows the allocation of a short
address to DO attributes. Short addresses can be
used within the communication to be more efficient
either in the communication, or in the handling of
messages at client or server. Furthermore, they can
be used as IED internal identification for the attribute.
Substation Configuration
description Language (SCL)
XML-based description language for configurations of
electrical substation IEDs. Defined in the IEC 61850
standard.
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1.7. Abbreviations
1.8. Related documents
Abbreviation Description
CET Communication Engineering Tool
CID Configured IED Description
(a type of SCL file)
DO Data Object
DS Data Set
ICD IED Configuration Description template
(a type of SCL file)
IEC International Electrotechnical Commission
IED Intelligent Electronic Device
(usually a protection and control relay device)
IP Internet Protocol
LAN Local Area Network
LD Logical Device
LED Light-emitting diode
LN Logical Node
LON Local Operating Network
MMS Manufacturing Message Specification
RCB Report Control Block
SCD System Configuration Description
(a type of SCL file)
SCL Substation Configuration description Language
SNTP Simple Network Time Protocol
Name of the manual Document ID
SPA-ZC 400 configuration CD 1MR151048
CAP 505 User’s Guide 1MRS752292-MUM
SPA-ZF Optical glass fibres,
multimode graded index type
1MRS755371
Plastic-core fibre optic cables,
Features and instructions for mounting
1MRS752089
IEC 61850 Standard
(parts -6, -7-2, -7-3, -7-4, -8-1)
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1.9. Document revisions
1.10. Safety information
Version Date History
A 06.10.2004 Document created
Dangerous voltages can occur on the connectors, even though the
auxiliary voltage has been disconnected.
National and local electrical safety regulations must always be
followed.
The device contains components which are sensitive to electrostatic
discharge. Unnecessary touching of electronic components must
therefore be avoided.
The frame of the device has to be carefully earthed.
Only a competent electrician is allowed to carry out the electrical
installation.
Non-observance can result in death, personal injury or substantial
property damage.
Breaking the sealing tape on the upper handle of the device will result
in loss of warranty and proper operation will no longer be guaranteed.
Do not touch the inside of the case. The adapter case internals may
contain high voltage potential and touching these may cause personal
injury.
!
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2. Introduction
2.1. SPA-ZC 400 Product Overview
SPA-ZC 400 is used to connect one RE_54_ device to the IEC 61850-8-1
Station bus. The IEC 61850 standard defines the IEC 61850 communication and
engineering specifications. In addition to the IEC 61850-8 communication,
SPA-ZC 400-BB and SPA-ZC 400-MM versions provide the simultaneous dual
port communication for fibre-optic SPA and LON
®
. SPA-ZC 400 offers also
possibility to access the device with the SPA protocol over TCP/IP using the same
Ethernet link.
A040001
Fig. 2.1.-1 Conceptual picture of a typical system setup
The mechanical and electrical connection of Ethernet adapter to a RE_54_ interface
is described in Chapter 3. Installation. The Ethernet adapter programming is
described in Chapter 4. Engineering.
As a prerequisite, you should understand the communication properties of
Intelligent Electronic Devices (IED) that is to be connected to Ethernet adapter. This
information is available in the manual for the protection relay in question. It is also
necessary to have basic understanding of the IEC 61850 system, in which IED is
going to be connected to.
C
E
REL 511
0
R
L
C
E
I
F
REF 543
REF 542plus
3rd party devices
SPA
GPS
Industrial
fibre-optic
Ethernet switch
To control
centers
Substation
Gateway
IEC61850-8
Station bus
SPA/Ethernet
adapters
SPA-ZC
400 and 402
Substation
Monitoring
and Controlling
System
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2.2. Introduction to IEC 61850 standard
The IEC 61850 standard defines the communication between IEDs in substations.
IEDs support the following functions:
- Protection and control
- Integration of innovative sensor and switch technologies
- Metering, supervisory control and data acquisition (SCADA)
- Remote monitoring and fault diagnostics
- Automated dispatch and control
- Asset management
- Condition monitoring and diagnostics
IEC 61850 provides:
- Standardized information models for all kind of protection relays, controllers,
circuit-breakers, transformers, etc.
- Information exchange methods to access the information models’ data: report
sequences-of-events, log historical data, control devices, sampled value
distribution, fast peer-to-peer process data exchange, etc.
- A unified system configuration language (XML based) and device on-line self-
description.
Compared to other communication standards for substation automation, the
IEC 61850 standard defines data modeling and communication services for this
specific domain. Data modeling is mapped to a communication protocol,
Manufacturing Message Specification (MMS, ISO 9506 protocol), which uses
TCP/IP and Ethernet. In addition to the communication specifications, engineering
information exchange is defined in SCL, which is a XML based language. For more
information on the IEC 61850 standard documentation, see Section 1.8. Related
documents.
2.3. SPA-ZC 400-BB and SPA-ZC 400-MM Product Overview
SPA-ZC 400-BB and SPA-ZC 400-MM versions have the same IEC 61850
functionality as described in Section 2.1. SPA-ZC 400 Product Overview. In
addition, these versions include an optional fibre optic interface.
This optional interface provides connection between the RE_ 54_ device and the
fibre-optic SPA, LON
®
and IEC 60870-5-103 buses. The bus connection module
converts incoming optical signals from the SPA, LON
®
and IEC 60870-5-103 bus
to electrical RS-485 signals for the RE_54_ devices and vice versa. It contains a
service pin for LON
®
nodes.
The optional interface can be used in the Loop and Star type bus topologies. Also
the module’s line idle state is selectable. The light can be turn on or off. The jumpers
select the bus topology (Loop or Star) depending on whether the light is turned on/
off.
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In the Loop topology, the interface receives the message from the fibre-optic
interface and passes it both to the fibre-optic transmitter and to the RS-485 interface.
In the Star topology, the interface receives the message from the fibre-optic receiver
and passes it only to the RS-485 interface. If the message is received from the
RS-485 interface, it is passed to the fibre-optic transmitter in both bus topologies.
The SPA bus communication uses Loop and light off modes, when the module
jumpers are in the Loop and light off positions. The LON
®
bus communication uses
Star and light off modes, when the module jumpers are in the Star and light off
positions. The IEC 60870-5-103 bus communication uses Star and light on/off
modes, when the module jumpers are in the Star and light on/off positions.
In the LON
®
bus communication the optional interface supports collision detection.
The Service Pin is connected via the RS-485 interface to the device’s Neuron
®
chip,
which is connected to the interface.
2.4. SPA-ZC 400 Features
IEC 61850 connectivity for RE_54_
Internal power supply
Easy-to-use configuration tool for the IEC 61850 data mapping
Simultaneous dual port communication (SPA-ZC 400-MM and SPA-ZC 400-BB
versions) for LON
®
and SPA
Support of SPA communication over TCP/IP
All relay data can be routed through SPA-ZC 400. It is intended to route the process
data (status, measurements and commands) through the IEC 61850-8-1 bus and the
rest of the available data can be routed through SPA over TCP/IP.
Table 2.3.-1 Settings of the jumper
Topology Light on/off Protocol
Star Light off LON or IEC 60870-5-103
Star Light on IEC 60870-5-103
Loop Light off SPA
Loop Light on Not supported
It is not possible to use IEC 60870-5-103 and IEC 61850
simultaneously.
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Module parts
Fig. 2.4.-1 Parts of SPA-ZC 400
2.5. Ordering information
2.5.1. SPA-ZC 400 product package
SPA-ZC 400
SPA-ZC 400 module
SPA-ZC 400 Installation and Commissioning Manual
SPA-ZC 400-MM
SPA-ZC 400 module with simultaneous dual port communication
ST connectors for glass fibre
SPA-ZC 400 Installation and Commissioning Manual
1
4
3
2
5
1. 100BaseFX connector
2. LON/ SPA/ IEC 60870-5-103
bus connector (optional)
3. LON/ SPA/ IEC 60870-5-103
Rx LED
4. LON/ LAN service pin
5. LAN and diagnostics LEDs
A040138
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SPA-ZC 400-BB
SPA-ZC 400 module with simultaneous dual port communication
Snap-in connectors for plastic fibre
SPA-ZC 400 Installation and Commissioning Manual
SPA-ZC 400 Configuration CD
Engineering tool, Communication Engineering Tool (CET) for SPA-ZC 40x
Connectivity Packages for RE_54_
Order at least one SPA-ZC 400 configuration CD with your delivery
to get the Communication Engineering Tool and the Connectivity
Packages. SPA-ZC 400 packages do not include the configuration
CD by default.
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3. Installation
This chapter describes the installation of the SPA-ZC 400 module and the
Communication Engineering Tool (CET). For additional information, such as
technical data, maintenance and service, refer to Chapter 5. Technical data and
Chapter 6. Maintenance and service.
3.1. Mechanical Installation
Connect the SPA-ZC 400 module to RE_54_ and screw SPA-ZC 400 to the 9-pin
type D-connectors. Connect the fibre optic LAN cable to the LAN connector of
SPA-ZC 400. The other end of the cable is connected to the IEC 61850-8
Station bus via Ethernet switch.
3.2. Communication Engineering Tool (CET)
3.2.1. System requirements
Communication Engineering Tool (CET) runs on Windows 2000, Windows XP and
Windows Server 2003 Operating Systems. A PC capable of running one of these
operating systems and applications is usually sufficient also for CET. For more
information, refer to the Section 1.8. Related documents. The detailed system
requirements can be seen below.
20 MB free hard disk space, if Microsoft .NET Framework 1.1, which is required
for running CET, has been installed already.
100 MB free hard disk space, includes installation of Microsoft .NET Framework
1.1. It is installed automatically, if it is not found.
3.2.2. Installing CET
1. Close all the open programs and insert the CET installation CD to the CD-ROM
drive of your PC.
2. The Installation program starts automatically. If this is not the case, open the
program by browsing it to the CD drive and start setup.exe.
3. First, the installation wizard extracts the installation files to your local computer,
see Fig. 3.2.2.-1.
A040005
Fig. 3.2.2.-1 Extracting installation files
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4. Then the CET Installation program opens. In this dialog click Next, see Fig.
3.2.2.-2.
With the Back button you can return to the previous dialog, and with the
Cancel button exit the installation wizard. This applies to all the dialogs in
the installation wizard.
A040006
Fig. 3.2.2.-2 CET Installation Program
/