Duration
1 day, Option: 1 day more
Who should attend?
Operators, maintenance technicians, engineers and team managers
What will I learn from this course?
  • Apply the corresponding maintenance procedures
  • Ensure a corrective maintenance in case of minor incidents by applying the specific safety rul

Instrument transformers - Maintenance (C5342)

Duration
1 day, Option: 1 day more
Who should attend?
Operators, maintenance technicians, engineers and team managers
What will I learn from this course?
  • Apply the corresponding maintenance procedures
  • Ensure a corrective maintenance in case of minor incidents by applying the specific safety rul

What will I learn from this course?

  • Familiarize with the design and operation of the substation and all associated components and equipment
  • Perform the erection and the commissioning of HYpact
  • Carry out corrective maintenance in case of minor failure
  • Gain understanding on how to operate and maintain equipment safely

Topics

Hybrid compact switchgear assembly HYpact Erection & Commissioning (TIR059)

What will I learn from this course?

  • Familiarize with the design and operation of the substation and all associated components and equipment
  • Perform the erection and the commissioning of HYpact
  • Carry out corrective maintenance in case of minor failure
  • Gain understanding on how to operate and maintain equipment safely

Topics

What will I learn from this course?

  • Describe system level functioning of HVDC station
  • Describe interaction of HVDC station with HVAC station

Topics

Introduction to HVDC single line diagram (SLD)
  • HVDC SLD, AC switchyard, AC harmonic filters, high frequency filters, converter transformers, converters, DC smoothing reactors, DC filters, DC switchgear, DC transducers.
Introduction to harmonics and filters
  • Harmonics, AC system model, type of filters, DC filter protection.
Introduction to insulation coordi

HVDC - Design Studies (HVDC002)

What will I learn from this course?

  • Describe system level functioning of HVDC station
  • Describe interaction of HVDC station with HVAC station

Topics

Introduction to HVDC single line diagram (SLD)
  • HVDC SLD, AC switchyard, AC harmonic filters, high frequency filters, converter transformers, converters, DC smoothing reactors, DC filters, DC switchgear, DC transducers.
Introduction to harmonics and filters
  • Harmonics, AC system model, type of filters, DC filter protection.
Introduction to insulation coordi

What will I learn from this course?

  • Understand the development and the operation of the transmission grid as well as the production plant connection
  • Know the different technologies associated with substation equipment
  • Characterize the different high voltage substation layouts

Topics

High voltage substation environment (A0203)

What will I learn from this course?

  • Understand the development and the operation of the transmission grid as well as the production plant connection
  • Know the different technologies associated with substation equipment
  • Characterize the different high voltage substation layouts

Topics

Duration
4 Days
Who should attend?
Engineers and technicians involved in design, study, modifications and maintenance
What will I learn from this course?
  • Design a high voltage electrical installation
  • Estimate the value of the short-circuit currents
  • Select the electric equipment an

High voltage industrial installations - Design (A2112)

Duration
4 Days
Who should attend?
Engineers and technicians involved in design, study, modifications and maintenance
What will I learn from this course?
  • Design a high voltage electrical installation
  • Estimate the value of the short-circuit currents
  • Select the electric equipment an

What will I learn from this course?

You will be able to understand why High Voltage Direct Current (HVDC) is used in power grid applications, how AC power is converted to DC power, and vice versa. You will be able to recognize the advantages and limitations associated with HVDC and identify the two types of converter substations and their main components.

High Voltage Direct Current (HVDC) Systems

(ELHVDC1)

What will I learn from this course?

You will be able to understand why High Voltage Direct Current (HVDC) is used in power grid applications, how AC power is converted to DC power, and vice versa. You will be able to recognize the advantages and limitations associated with HVDC and identify the two types of converter substations and their main components.

Manufacturing for this product has been discontinued. As an alternative, please refer to EnerVista Viewpoint Monitoring software.

EnerVista Integrator - Legacy

Comprehensive Communication Engine for Rapid Integration

Manufacturing for this product has been discontinued. As an alternative, please refer to EnerVista Viewpoint Monitoring software.

Key Features

  • Easy device setup through device communications
  • Rapid retrieval of device, event and waveform data from GE Vernova’s Multilin devices for communication to OPC clients
  • Comprehensive, factory tested memory maps for GE Vernova’s Multilin devices
  • Scalable communication options for high device or point counts - up to 1000 devices or up to 65000 points respectively
  • Reliable aggregation of event records from multiple Multilin devices into a single system wide Sequence-of-Event (SOE) record
  • Optimized performance and decreased commissioning effort through the use of Virtual Mnemonics to scale data points
EnerVista Integrator efficiently links the information from GE Vernova's Multilin and non-GE Vernova devices to monitoring, control and data collection systems

OPC Server

EnerVista Integrator integration software is designed to seamlessly integrate Multilin devices into new or existing monitoring or control system. With tested, pre-configured memory maps for Multilin devices, EnerVista Integrator eliminates significant effort required for programming of the mnemonics associated with HMI, SCADA and DCS system integration, greatly reducing the commissioning time and cost.

tab1-img-02 User-friendly, intuitive setup similar to EnerVista ViewPoint Monitoring/Setup software to connect devices via OPC
Device Setup 

Configuring Multilin devices in EnerVista Integrator is achieved through establishing communication with the device.

  • Supports user-friendly, intuitive configuration of devices similar to EnerVista Viewpoint Monitoring and EnerVista Setup software
  • Provides configuration settings for serial or Ethernet communications
  • Tests communications to ensure accurate device configuration
Third-Party Devices

EnerVista Integrator supports third-party (non-GE Vernova) devices that utilize Modbus RTU or Modbus TCP/IP, providing a simple way to incorporate all devices into a monitoring and control system.

  • Supports addition of Modbus RTU or Modbus TCP/IP third-party devices
  • Provides direct configuration of Modbus mnemonics
  • Results in reduced integration time for multiple installations of EnerVista Integrator by importing and exporting mnemonics files

Events

Automated archiving of event and waveform data from Multilin devices ensures that there is always comprehensive data available for diagnosing power system events.

Event Logging

The event records from Multilin devices can be automatically downloaded from each device and stored in a system wide sequence of events record. EnerVista Integrator will continually poll each Multilin device to see if any new events have been added to that device's event record. Once a new event has been detected, the event record will be downloaded from the device to the system wide sequence of events record.

Event Viewing

The Event Viewer centrally stores and displays information about preset and configured systems events. Each event in the record contains the following information:

  • Event Time
  • Event Type
  • Source Name
  • Source Type
  • Event Cause

This data can be sorted by any of the fields indicated above.

tab2-img-01 Create a comprehensive, centralized, system wide sequence of event records for analysis of power system faults

Waveform

The waveform (oscillography) files from Multilin devices can be automatically downloaded from each device and stored in a central data repository using Integrator. Similar to Event Logging, EnerVista Integrator will continually poll each Multilin device to see if any new waveform files have been created. Once a new waveform has been detected by EnerVista Integrator, the file will be downloaded from the device to the centralized data repository.

Waveform Viewing

View and analyze waveform fault data that has been recorded from a power system device in a time-based, phasor quantity or tabular view. This Waveform View utility provides functionality to:

  • Merge and overlay waveforms that were recorded from multiple devices
  • Identify the harmonic content in the monitored parameters
View and analyze waveform fault data retrieved from devices. View and analyze waveform fault data retrieved from devices.

System Requirements - EnerVista Integrator

ComponentRequirement
Supported Operating Systems
  • Windows 7 (SP1) – 32 or 64 bit
  • Windows 8.1 – 32 or 64 bit
  • Windows 10 – 32 or 64 bit
  • Windows Server 2012 R2 (SP1)
Supported Databases
  • SQL Server 2012 Express
  • SQL Server 2012
Computer and Processor

Recommended workstation:

  • Intel® Core™ i3 CPU or higher
  • CD-ROM device
Memory4 GB of RAM (minimum)

Supported Devices

device familydevicefirmware
ATSMX1505.4x, 6.0x
MX2505.4x, 6.0x
MX3501.2x
Bay Protection/SpecializedC302.6x to 7.7x
C602.6x to 7.7x
C90Plus1.6x to 1.8x
U90Plus1.1
BusB302.6x to 7.7x
B904.8x to 7.7x
Distribution Feeder3501.2x to 2.3x
F352.6x to 7.7x
F602.6x to 7.7x
F6501.6x to 7.1x
MIF 24.0
735/7371.5x
750/7603.6x to 7.4x
8501.0x to 2.2x
GeneratorG304.4x to 7.7x
G602.6x to 7.7x
4891.3x to 4.03x
8891.6x to 2.2x
Line ProtectionD303.0x to 7.3x
D602.6x to 7.7x
D90Plus1.8x
L305.6x to 7.7x
L602.6x to 7.7x
L902.6x to 7.7x
Meters/SwitchesPQM3.3x to 3.6x
PQMII1.0x to 2.2x
EPM10003.8x
EPM20001.0x
EPM22001.0x
EPM40003.8x
EPM4600S3.0x
EPM4600T3.0x
EPM5000P2.4x
EPM5200P2.4x
EPM5300P2.4x
EPM5350P2.4x
EPM60001.0x
EPM6000T1.0x
EPM60101.0x
EPM61001.0x
EPM70001.0x
EPM7000T1.0x
EPM71001.0x
EPM9450Q2.1x
EPM9650Q2.1x
EPM97001.0x
EPM98006.1x
EPM99001.0x
EPM9900P1.0x
ML24003.0x
device familydevicefirmware
MiscellaneousMRPO1.0
FIRETRACER1.0
VERSAMAX1.0
Monitoring/Remote I/ODGCM4.0x
Motor2392.3x to 2.7x
269+6.0x
3391.3x to 2.3x
3691.6x to 3.6x
4692.5x to 5.2x
8691.3x to 2.2x
MM2001.0x to 1.2x
MM3001.2x to 1.70
MMII4.0x to 5.2x
MMIII1.0 to 1.2x
RRTD1.4x, 1.5x
SPM2.0x, 2.1x
M602.6x to 7.7x
NetworkN603.4x to 7.7x
Transformer7452.4x to 5.2x
T352.6x to 7.7x
T602.6x to 7.7x
3451.3x to 2.3x
8451.40x to 2.2x
Trip Units/SwitchgearSpectra MicroVersa Trip5.1x
Enhanced MicroVersa Trip C4.1x
Enhanced MicroVersa Trip D4.1x
GTU (EntelliGuard TU Trip Unit)7.0x
ELVS (Entellisys)4.0x to 5.0x
MET12.02.02
UPSUPS, UPS LP, UPS SG1.0

Objectif de la formation

  • Connaître les caractéristiques générales du gaz SF₆ et maîtriser son impact sur l’environnement, les émissions et l’effet de serre
  • Utiliser le gaz SF₆ en toute sécurité en appliquant les bonnes pratiques en fonction de l’équipement concerné
  • Maîtriser les dispositifs de récupération, de contrôle et de mesures du gaz SF₆
  • Connaître les thèmes des questions de l’épreuve théorique et de l’épreuve pratique, la méthodologie du QCM-QRU et le matériel utilisé

Programme théorique

  • Environnement et gaz SF₆ – règlemen

Certification SF₆

Récupération du gaz SF₆ selon la réglementation CE 517-2014 (V0033)

Objectif de la formation

  • Connaître les caractéristiques générales du gaz SF₆ et maîtriser son impact sur l’environnement, les émissions et l’effet de serre
  • Utiliser le gaz SF₆ en toute sécurité en appliquant les bonnes pratiques en fonction de l’équipement concerné
  • Maîtriser les dispositifs de récupération, de contrôle et de mesures du gaz SF₆
  • Connaître les thèmes des questions de l’épreuve théorique et de l’épreuve pratique, la méthodologie du QCM-QRU et le matériel utilisé

Programme théorique

  • Environnement et gaz SF₆ – règlemen