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- Getting Started
- Quick Start
- Required Material
- Step 1: Installing HYPERSIM, Request and Install a License on Localhost
- Step 2: Connecting your Host Computers to your Real-Time Target
- Step 3: Using Your Integration Model with IOs
- Step 4: Creating a New Schematic
- Step 5: Drawing a Power System
- Step 6: Opening an Example Model, Loading Sensors and Starting a Simulation
- Step 7: Monitoring Simulation Results with ScopeView
- Step 8: Using Analog and Digital I/O
- Step 9: Mapping Tasks and Starting the Simulation
- Step 10: Acquiring Data and Modifying Graph Templates
- Step 11: Analyzing performance post-simulation
- Troubleshooting
- Feature Quick Start Guides
- How To (Procedures)
- Overviews and Reference
- Software Compatibility
- System Requirements
- Quick Start
- Graphical User Interface
- Components by Library
- Component Parameter Form Introduction
- Component Sensor Form Introduction
- Control Components
- Network Components
- Network Energy Storage
- Network FACTS and HVDC
- Network Filters
- Network Lines and Cables
- Network Loads
- Network Machines and Generators
- Network Measurements
- Network Renewable Energy
- Network RLC
- Network Tools
- Network Transformers
- Network Sources
- Network Switches and Breakers
- Network Voltage Source Converters
- Network Interface
- Signal Routing
- Target Inputs and Outputs
- Concepts and Advanced Functionalities
- Data Logger
- External Network Compatibility and Import
- FPGA-Based Simulation
- FPGA Scope
- Impedance Measurement
- Line Generator
- Load Flow
- Machine Data
- Model Optimization
- Python API
- Sequence Manager
- Simulink Compatibility
- Simulink | Prerequisites and Supported Features
- Simulink | Introduction
- Simulink | Using Multiple Time-Step Code Generation
- Simulink | Using S-Functions
- Simulink | Using Scopes
- Simulink | Using Tunable Parameters
- Simulink | Advanced: Custom Options
- Simulink | Advanced: Generating Code for a 64-Bit Operating System
- Simulink | Advanced: Protecting the Model Code
- Snapshot
- Task Manager
- Transformer data Tab | Inductance Matrix Transformer Programming Interface
- User-Coded Model (UCM)
- Topology Analysis
- EXata CPS
- RT Monitor
- Variables and Expressions
- ScopeView
- ScopeView | Main Window
- ScopeView | Graphic Page Menus
- ScopeView | Advanced Graphic Actions
- ScopeView | Signals Form Menu, Data Source Chooser & Signal Selection
- ScopeView | API
- ScopeView Functions | Approximation
- ScopeView Functions | Trigonometric
- ScopeView Functions | Mathematical
- Mathematical | ABS
- Mathematical | CUMSUM
- Mathematical | DERIV
- Mathematical | DIFF
- Mathematical | INTEG
- Mathematical | LOG
- Mathematical | LOG10
- Mathematical | MAX
- Mathematical | MOY
- Mathematical | MIN
- Mathematical | NEG
- Mathematical | PHASEDIFF
- Mathematical | PHASESHIFT
- Mathematical | POS
- Mathematical | PROD
- Mathematical | RMS
- Mathematical | SIGN
- Mathematical | SQRT
- Mathematical | STAIR
- Mathematical | SUM
- Mathematical | WAVG
- Mathematical | WMAX
- Mathematical | WMIN
- Mathematical | WRMS
- Mathematical | WSUM
- ScopeView Functions | Miscellaneous
- Misc. | AMOD
- Misc. | CIRCLE
- Misc. | CLEARINGTIME
- Misc. | CROSSING TIME
- Misc. | ENERGY
- Misc. | ENV
- Misc. | ENV PEAK
- Misc. | ENV PP
- Misc. | I 2 T
- Misc. | LENGTH
- Misc. | LIM
- Misc. | MAXF
- Misc. | MINF
- Misc. | OPTIME
- Misc. | PERIOD
- Misc. | POWER
- Misc. | POWER3PH
- Misc. | RAMP
- Misc. | RATE
- Misc. | THRESHOLDTIME
- Misc. | VERSUS
- Misc. | XFIRST
- Misc. | XLAST
- Misc. | XSHIFT
- ScopeView Functions | Statistical
- ScopeView Functions | Harmonic Analysis
- ScopeView Functions | Spectral Analysis
- ScopeView Functions | Advanced
- Advanced | SIDSEUIL
- Advanced | SIDYN2
- Advanced | SIDYN2F
- Advanced | SIDYN2V
- Advanced | SIFREQ
- Advanced | SIGCMP
- Advanced | SIMAX1
- Advanced | SIMAX2
- Advanced | SIMAX3
- Advanced | SIHARMO
- Advanced | SIMXHART
- Advanced | SIMXSOM1
- Advanced | SIMXSOM2
- Advanced | SIMXSYMT
- Advanced | SIPZ
- Advanced | SISEUIL
- Advanced | SISYM3
- Advanced | SITENV
- Advanced | SITOP
- Advanced | SITOPREF
- Advanced | SITSEUIL
- ScopeView | Troubleshooting
- TestView
- TestView | GUI Walkthrough
- TestView | Commands Available for Tests
- TestView Command | HYPERSIM | HYPERSIM Test
- TestView Command | HYPERSIM | HYPERSIM Settings
- TestView Command | Main | Breaker
- TestView Command | Main | Multi-Breaker
- TestView Command | Main | Snapshot
- TestView Command | Main | Miscellaneous
- TestView Command | Main | CmdLine
- TestView Command | Main | Excel
- TestView Command | Main | GetValue
- TestView Command | Main | Processing
- TestView Command | General | Loop
- TestView Command | General | If (expression)
- TestView Command | General | Else [ if(expression) ]
- TestView Command | General | Sleep
- TestView Command | General | Pause/Message
- TestView Command | General | Macro
- TestView Command | General | Assign
- TestView Command | General | Expression
- TestView Command | General | Eval
- TestView Command | General | Input Value
- TestView Command | General | TableOut
- TestView Command | General | GraphicOut
- TestView Command | Miscellaneous | Action Group
- TestView Command | Miscellaneous | Table Report
- TestView Command | Extra | Post Sequence
- TestView Command | Extra | Node Test (Deprecated)
- TestView Command | Extra | Processing (Deprecated)
- TestView | Data Architecture
- Example 1: Changing the Timing of a Fault
- Example 2: Using Variables in TestView
- Example 3: Using Excel to Define Input Parameters
- Example 4: Executing an Existing Project (HYPERSIM <6.2)
- I/O Interfaces
- Example Models
- Examples | Benchmarks
- Example | HVAC 230kV 16Bus
- Example | HVAC 230kV 172Bus IEEE RTS96
- Example | HVAC 230kV 24Bus IEEE
- Example | HVAC 230kV 6Bus
- Example | HVAC 230kV 7Bus
- Example | HVAC 230kV 86Bus
- Example | HVAC 230kV 8Bus
- Example | HVAC 230kV 96Bus 86Line
- Example | HVAC 230kV 9Bus IEEE
- Example | HVAC 500kV 110Bus
- Example | HVAC 500kV 200Bus
- Example | HVAC 500kV 35Bus
- Example | Kundur 4-Machine Power System
- Examples | Conventional Generation
- Examples | Cyber-Physical
- Examples | Distribution and Industrial Power Systems
- Examples | Distribution Connected Combined Heat & Power
- Examples | Emergency Diesel-Generator, Asynchronous Motor and 25 Synchronism-Check
- Examples | GHOST Microgrid Model
- Examples | Introduction to Industrial Loads
- Examples | Induction Motor Startup with Different Rotor Designs
- Examples | Modeling a DC Motor Drive Using Simulink
- Examples | Permanent Magnet Synchronous Machine-based Variable Frequency Drive (VFD)
- Examples | Feeder 25kV 24Bus
- Examples | Feeder 20kV 600 Node
- Examples | EMTP Compatibility
- Examples | FACTS & HVDC
- Examples | How To
- Examples | How To (Components)
- Examples | I/O Interfaces
- Examples | Protection
- Examples | Directional Overcurrent Protection
- Examples | GHOST Microgrid Model with Protection Scheme
- Examples | IEC 61850 Substation Automation System (SAS)
- Examples | IEC 61850 Substation Automation System (SAS) with MMS
- Examples | Line Distance Protection with POTT including TestView Project
- Examples | Out of Step (OOS) Detection Using PMUs
- Examples | Transformer Differential Protection
- Examples | Renewable Energy
- Examples | 2 MW Grid-Connected PV array
- Examples | Distribution Connected Battery Energy Storage System with Average Converter
- Examples | FPGA-Based Dual Active Bridge
- Examples | Distribution Connected Fuel Cell Generation System with Average Converter
- Examples | Distribution Connected Photovoltaic Generation System with Average Converter
- Examples | Distribution Connected Photovoltaic Generation System with Switching Function Converter
- Examples | Doubly-Fed Induction Generator based Wind Turbine with Average and Switching Function Converters
- Examples | Islanded Operation of an Inverter-based Microgrid Using Droop Control Technique
- Examples | Type 4 Wind Farm model
- Examples | Transmission
- Examples | Transportation
- Examples | Benchmarks
- Release Notes
- HYPERSIM Release Notes: 2025.1
- HYPERSIM Release Notes: 2024.4
- HYPERSIM Release Notes: 2024.3
- HYPERSIM Release Notes: 2024.2
- HYPERSIM Release Notes: 2024.1
- HYPERSIM Release Notes: 2023.3
- HYPERSIM Release Notes: 2023.2
- HYPERSIM Release Notes: 2023.1
- HYPERSIM Release Notes: 2022.2
- HYPERSIM Release Notes: 2022.1
- HYPERSIM Release Notes: 2021.3
- HYPERSIM Release Notes: 2021.2
- HYPERSIM Release Notes: 2021.1
- HYPERSIM Release Notes: 2020.3
- HYPERSIM Release Notes: 2020.2
- HYPERSIM Release Notes: 2020.1
- HYPERSIM Release Notes: 2019.3
- HYPERSIM Release Notes: 2019.2
- HYPERSIM Release Notes: 2019.1
- Performance Benchmarks
- Benchmarks | GHOST Microgrid
- Benchmarks | GHOST Microgrid with Protection
- Benchmarks | 600-Node 20 kV Distribution System
- Benchmarks | Two Substations with 100 km Transmission Line
- Benchmarks | 6-Bus Transmission System with I/Os
- Benchmarks | IEEE 39-Bus New England Power System
- Benchmarks | 110-Bus 500 kV Transmission System
- Benchmarks | Brazil 138 kV and Above Power System
Contact Us
If you have any questions, please refer to our online Knowledge Base:
…or contact the Support team using our web form:
If you don’t find answers for the issues you are having, do not hesitate to contact us, and we’ll make sure to help you through your first steps and answer all your questions.
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Disclaimer
Information in this website is subject to change without notice.
No part of this documentation may be copied or reproduced in any form or by any means without written permission from OPAL-RT TECHNOLOGIES Inc.
OPAL-RT TECHNOLOGIES makes no representation or warranty with respect to the adequacy or accuracy of this documentation or the software which it describes. In no event will OPAL-RT TECHNOLOGIES or its direct or indirect suppliers be liable for any damages whatsoever including, but not limited to, direct, indirect, incidental, or consequential damages of any character including, without limitation, loss of business profits, data, business information, or any and all other commercial damages or losses, or for any damages in excess of the list price for the license to the software and documentation.
Copyright
HYPERSIM® is a registered trademark.
All product names, logos, and brands are property of their respective owners. All company, product and service names used in this website are for identification purposes only. Use of these names, logos, and brands does not imply endorsement.
HYPERSIM: © Copyright 2019 Hydro-Québec
DesignWorks: © Copyright 2019 Capilano Computing Systems Ltd
ScopeView: © Copyright 2019 Hydro-Québec
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