OPAL-RT is proud to present a series of webinars, demos & highlights to learn, exchange ideas and stay up-to-date on real-time simulation and OPAL-RT products.
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Using a high-fidelity communication network emulator, EXata CPS, command and measurement signals between the controller and microgrid are subjected to cyberattacks causing unexpected behavior within the system.
In this presentation, PHIL systems and their requirements are classified. Then, the necessary considerations for building a closed-loop system are presented and an overview of the options for designing the overall system is given. Finally, the challenges of building a robust PHIL system are discussed, and analytical approaches and potential solutions are briefly presented.
The Autonomous Vehicle Platform (AVP) is a complete hardware/software, X-in-the-loop capable platform (where X can be Model, Driver, Software, Hardware) allowing researchers and developers to design, train, and evaluate the performance of autonomous systems in a virtual environment. The platform includes several pre-configured and detailed 3D models of a sample city, vehicle dynamics, and sensor models and provides Perception, Fusion, and Driving functions as well. With complete control over weather conditions and traffic densities, developers can test autonomous vehicle behavior in various situations. Users can also collect raw data from the provided sensors, which include RGB camera, segmentation camera, LiDAR, radar, IMU, and GNSS, and uses them to further develop perception, fusion, and driving models. Finally, data on the vehicle's performance, such as speed, braking, and steering, can also be retrieved to identify improvement areas and ensure that the vehicle's behavior meets safety and performance standards.
at OPAL-RT TECHNOLOGIES
In this example, the grid-forming Smart Inverter Control toolbox has been used to control the operations of two inverter-interfaced distributed energy resources (DER) having different nameplate ratings while operating in parallel in the context of an islanded microgrid. Both controllers adopt droop control as the grid-forming function. The toolbox ensures proportional power sharing between the DERs and maintains stable voltage and frequency of the islanded microgrid.
By simulating EV powertrains to perform Hardware-in-the-Loop (HIL) tests of traction inverter electronic control units (ECUs), the Inverter Test System (ITS) allows EV test engineers to create more life-like scenarios not easily and accurately reproduced on the road. The motor and power electronics are modeled using OPAL-RT's Power Electronics Add-on.
In this demo we connect a development ECU to the ITS, execute a typical 2-level inverter model with attached machine, and perform speed profiles in normal operating conditions. Then we will change gears and walk users through mapping testing requirements to the ITS configuration to identify how the ECU will react under faulting conditions. Finally, we will record high-speed data from the system as it runs a test sequence so that it can be visualized and analyzed offline by ECU developers.
at OPAL-RT TECHNOLOGIES
Marketing Manager - EV Test at NI
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Learn how to go from model edition to real-time execution. This video demonstrate the edition/execution workflow on 1 CPU core and present some features such as real-time monitoring.
In this video tutorial, learn about the FPGA Scope and how to configure it, and see examples of how to use the FPGA Scope to visualize I/O and high speed eHS signals.
This video presents features such as online parameter change and user interface
- Graphical interface - LabVIEW
- Online parameter change
This video demonstrates the edition/execution workflow for a parallel execution on 2 CPU cores. Illustrate the XHP mode and optimize online parameter change.
This video to demonstrates two ways of storing simulation results and discuss advantages & drawbacks.
This video to demonstrates various ways to connect the simulated model to real devices through analog, digital and communication interfaces to be able to implement hardware in-the-loop or control prototyping applications.
Increasing Productivity Through Test Automation: learn how to implement Python scripts to automate repetitive actions and increase productivity.
Improve the structure of the Python script test case (Part 1)
- Start from model and script prepared in part 1.
- Encapsulate API functions into “library” functions
- Use a module for global variables
- Create a test sequencer
- Get recordings, plot graphs.
This video will explain how you can easily implement a rich console for your model with National Instruments LabVIEW™ , directly from the RT-LAB Interface. A demonstration is provided, to show how you can get started today with one of the five free panels included with RT-LAB.
Learn in this video how to seamlessly import your EMTP model to HYPERSIM for real-time simulation.
Learn in this video how to seamlessly import your PSCAD model to HYPERSIM for real-time simulation.
In this video, learn how easy it is to bring your model from PSSE to real time with HYPERSIM.
This video demonstrates HYPERSIM’s interface for power systems simulation, along with features such as task mapping, core allocation, sensors definition, I/O interfaces, and communication protocols.
This video presents Scopeview advanced features such as layouts & post-processing functions.
This video presents tips & tricks to take full advantage of HYPERSIM.
Learn how to implement TestView scripts to automate repetitive actions and increase productivity.
Simulink helps users easily build and design control systems. These can be imported for direct use in HYPERSIM while keeping flexibility for modifying parameter values during simulation. This discussion aims to give participants useful and actionable information when planning complex project strategies.
In this video, learn the methodology to mix T&D networks in the same simulation.
This video to demonstrates two ways of storing simulation results and discuss advantages & drawbacks.
- Adding a target to the workspace
- Editing, validating and building the model
- Creating and configuring an OPAL-RT board
- Executing and monitoring the simulation
- Different Solutions for Different problem Sizes
- Challenges of distribution Network with EMT-DRTS
Speakers:
Yahia Bouzid, Technical Director at OPAL-RT TECHNOLOGIES
Speakers:
Hendrik Vennegeerts, University Professor at Duisburg-Essen University
Marc Woestefeld, PhD Student at Duisburg-Essen University
Fabian Schwarz, Product manager at Lucas Nülle
François Tempez, Sales Engineer at OPAL-RT
Speakers:
Dr. Ryan Quint, Senior Manager, BPS Security and Grid Transformation at (NERC)
Miguel Angel Cova Acosta, Specialist Grid Modelling & Analysis at Vestas
Tim Cervenjak, Network Modelling & Information Manager at AEMO
Jean-Nicolas Paquin, Division Manager AXES at OPAL-RT TECHNOLOGIES
Jean Bélanger, CEO & CTO at OPAL-RT TECHNOLOGIES
Speakers:
Didier Wautier, Head of AD Simulation & Virtual Reality Department at Renault)
Gilles Gallee, Business Development Director AD & Simulator at Ansys
Herve Pollart, General Manager at OPAL-RT STI
Speakers:
Jean Bélanger, CEO and CTO at OPAL-RT TECHNOLOGIES
Jaime Peralta, Board of Directors at Coordinador Eléctrico Nacional (CEN)
Henry Gras, Director of development and consulting services at EMTP®
Jean Mahseredjian, CEO, lead developer at EMTP®
Speakers:
Mathieu Haineault, Offering Manager - Aerospace at OPAL-RT TECHNOLOGIES
Alexandre Leboeuf, Customer Solutions Division Manager at OPAL-RT TECHNOLOGIES
Speakers:
Sudipta Chakraborty, Director - Energy Systems at OPAL-RT TECHNOLOGIES
Ravinder Venugopal, Managing Director at OPAL-RT Germany GmbH
Speakers:
Raphael Caire, Associate Professor at Grenoble Electrical Engineering Laboratory (G2Elab)
Yahia Bouzid, Technical manager at OPAL-RT Europe
Tuan Tran Quoc, Professor, Scientific Manager at Smart Grid CEA Liten/INES
Dr. Van Hoa Nguyen, Researcher at Alternative Energies and Atomic Energy Commission (CEA)
Speakers:
Philipp Ruffing, Team Leader DC Systems at RWTH Aachen University
Speakers:
Leonardo Montealegre, Researcher at Hydro-Québec Research Institute
Speakers:
Adam Zuga, Automation Engineer and Group Leader at Fraunhofer IWES
Speakers:
Sukumar Mishra, Professor, IIT Delhi (India)
Speakers:
Yiying Zhu, Director of Digital and Analog Hybrid Simulation Laboratory of Simulation Center at China Electric Power Research Institute
Speakers:
Hossein Hooshyar, Technical Leader at EPRI
Speakers:
Luc-Andre Gregoire, Senior Real-Time Simulation Engineer and HIL Specialist, OPAL-RT TECHNOLOGIES
Speakers:
Ravinder Venugopal, Managing Director at OPAL-RT Germany
Raffaele Colasacco, Sales Engineer at OPAL-RT TECHNOLOGIES
Speakers:
Amitkumar KS, Team Leader - Power Testbed Applications at OPAL-RT TECHNOLOGIES
Ashot Minasyan, CEO/CTO at Bitlismen
Gevorg Parsyan, Systems Engineer at Bitlisment
Speakers:
Dr. Antonello Monti, Director of the Institute for Automation of Complex Power Systems at E.ON Energy Research Center
Speakers:
Xiaolin Zhang, Senior engineer at Nanjing New Energy Institute of CEPRI
Speakers:
Adam Zuga, Automation Engineer and Group Leader at Fraunhofer IWES
Speakers:
Felipe Arrano-Vargas, PhD Candidate at UNSW Sydney
Speakers:
Peter Imris, Research Assistant at Brunel University London
Speakers:
Henildo Barros, Joao Jose Rodrigues De Oliveira, and Felipe Dicler
Operador Nacional do Sistema Elétrico (ONS)
Speakers:
Etienne Leduc, Energy Market Offering Manager at OPAL-RT TECHNOLOGIES
Mehrdad Kazemtabrizi, Smart Grid Simulation Specialist at OPAL-RT TECHNOLOGIES