RT-EVENTS
RT-EVENTS Blockset is an add-on that works with MATLAB Simulink(tm) to improve the efficiency and accuracy of continuous-time and discrete-time systems simulations whose dynamics change due to discrete events. |
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RT-Events is a Simulink toolbox for the fixed-time-step simulation of hybrid systems involving dynamics and discrete events asynchronous with respect to the simulation clock. As the RT-Events Blockset works with a fixed step size, it is therefore compatible with the Real Time Workshop (RTW) and RT-LAB and can be used for real-time applications.
Improved accuracy for discrete simulation of event-based systems
- Compensates for the errors introduced when events occur between samples
- Accuracy depends on the time step selected with respect to the frequency content of continuous signals
Fast simulation of event-driven systems
- No iteration, uses fixed time-step algorithm
- Faster simulation than variable-step algorithms
- Supports distributed real-time simulation
- Suitable for hard real-time applications such as hardware-in-the-loop or embedded simulations
- Compatible with visual simulation tools (e.g. Simulink) and code generators (e.g. RTW)
Using RT-EVENTS
The RT-Events Blockset is the solution to the following problems encountered in the simulation of event-based systems:
Very long simulation time
- The simulation of event-based systems require time consuming variable-step algorithms : Limitations of actual visual simulation tools (e.g. Simulink) :
- Code generators do not support variable-step algorithms
- Simulation tools run in interpretative mode on a single CPU
- Large scale and very complex models with several hundreds of diagrams for typical case
Imprecise hard-real-time simulation
- Variable time step algorithms cannot be used for hard real-time simulations
- Limitations of discrete simulation algorithms
- Errors for event-based systems when events occur between the sampling instants
- Require sampling periods and/or interrupt response latencies smaller than the specified timing precision of critical events; for example, 10s for a combustion engineer
Typical Applications
- Increasing the simulation speed of complex hybrid systems consisting of both dynamic systems and discrete events: The use of variable step solver suffers from the disadvantage of greatly slowing the simulation for complex hybrid systems; meanwhile, the use of fixed-step solvers, improves the simulation speed, giving incorrect results because of the delays it takes into account for the discrete events (asynchronous with the simulation step) to the next simulation cycle, causing accumulating errors and phase shifts.
- Real-time simulation of hybrid systems: Only fixed-step solvers can be used for automatic code generation; however, a standard fixed-step solver of Simulink yields erroneous results, then applied to hybrid systems; and this may accumulate and cause drift and big phase shift. On the other hand, RT-Events applies a compensation algorithm to discrete events in real-time, resulting in a great precision.
- Real-time simulation of firing pulse units of power electronics: In rapid prototyping of power electronic systems, it is difficult to convert the controller outputs to switching signals that are sent to time-stamped digital outputs, by using comparators and timer blocks. The use of standard Simulink blocks causes high jitter because the lack of any timing information; when simulated at fixed-step in the order of 10 to 100 s, the firing pulses cannot be generated precisely unless timing information about the switching and state transitions is added to the switching state; and this is enabled by RT-Events.
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Jul 2009 |
The complete Applications Booklet - Product Information & Simulation Applications Authors : Jean Bélanger, Jean-Nicolas Paquin, Wei Li Published at : Abstract : eMEGAsim and eDRIVEsim Product Information & Simulation Application Examples |
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May 2009 |
Real-Time Simulation of HVDC Systems with eMEGAsim Authors : Jean Bélanger, Jean-Nicolas Paquin, Wei Li Published at : Abstract : This document provides users with benchmark models to evaluate the OPAL-RT Technologies system configuration needed to develop research models for the following three HVDC transmission systems: • Bipolar HVDC model, •... |
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May 2006 |
Hardware-In-the-Loop Simulation of Finite-Element Based Motor Drives with RT-LAB and JMAG Authors : Jean Bélanger, Simon Abourida, Takashi Yamada, Tomoyuki Arasawa Published at : Abstract : This paper presents a new development in the field of design process and testing of motor drives, for hardware-in-the-loop (HIL) applications. It consists of implementing the Finite Element (FE) Method applied to... |
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May 2006 |
InfiniBand-Based Real-Time Simulation of HVDC, STATCOM and SVC Devices with Custom-Of-The-Shelf PCs and FPGAs Authors : Christian Dufour, Jean Bélanger, Simon Abourida Published at : Abstract : This paper presents a real-time simulator for large power network based on Custom-Of-The-Shelf technologies, all embedded in the RT-LAB real-time simulation platform. This platform uses Pentium, Xeon, Opteron-based PCs (... |
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Feb 2006 |
FPGA-Based Real-Time Simulation of Permanent Magnet Synchronous Motor Drive for Vehicular Applications Authors : Christian Dufour Published at : Abstract : Nowadays, it is a common engineering practice to test a motor controller against a simulated motor model running in real-time before using the controller in real-life conditions. This has several advantages. For example... |
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Feb 2006 |
Real-Time Simulation of Permanent Magnet Motor Drive on FPGA Chip for High-Bandwidth Controller Tests and Validation Authors : Christian Dufour, Jean Bélanger, Simon Abourida Published at : Abstract : This paper presents a real-time simulator of a permanent magnet synchronous motor (PMSM) drive implemented on an FPGA card. Real-time simulation of PMSM drives enables rapid deployment and thorough testing of efficient... |
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Dec 2005 |
Hardware-In-the-Loop Simulation of Power Drives with RT-LAB Authors : Christian Dufour, Jean Bélanger, Simon Abourida Published at : Abstract : This paper presents the RT-LAB Electrical Drive Simulator technology along with practical applications. The RT-LAB simulation software enables the parallel simulation of power drives and electric circuits on clusters of... |
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Dec 2005 |
RT-LAB Real Time Simulation of Electric Drives and Systems Authors : Christian Dufour, Girish Nanjundaiah, Jean Bélanger, Simon Abourida Published at : Abstract : This paper presents the RT-LAB Electrical Drive Simulator technology along with practical applications. The RT-LAB simulation software enables the parallel simulation of an electrical circuit on clusters of PC running... |
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Nov 2005 |
Real-Time Simulation of PEM-Based Fuel-Cell Hybrid Electric Vehicles Authors : Christian Dufour, Tuhin K. Das Published at : Abstract : This paper presents results on real-time simulation of a PEM-based fuel-cell hybrid electric vehicle. The hybrid electric vehicle is composed of a battery, a fuel cell, a DC-DC converter and a choice of PMSM or induction... |
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Nov 2005 |
Real-Time Digital Simulation and Control Laboratory for Distributed Power Electronic Generation and Distribution Authors : Christian Dufour, Jean Bélanger, Simon Abourida Published at : Abstract : Complex power generation and distribution systems are needed on board spacecrafts, all electric warships, hybrid electric vehicles, distributed energy systems and other applications requiring compact, flexible autonomous... |
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Sep 2005 |
Real-Time Simulation of Matrix Converter Drives Authors : Christian Dufour, Lixiang Wei, Thomas A. Lipo Published at : Abstract : This paper describes a real time simulator of matrix converter system. The simulated plant is a classical matrix converter with source, input filter and load. The simulator is based on the RT-LAB real time simulation... |
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Apr 2005 |
Real-Time and Hardware-in-the-Loop Simulation of Electric Drives and Power Electronics: Process, Problems and Solutions Authors : Christian Dufour, Jean Bélanger, Simon Abourida Published at : Abstract : This paper discusses Real-Time and Hardware-In-The Loop simulation used for the design and testing of electric drives and power electronic systems. A thorough overview of the design process involving the approach of real... |
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Feb 2005 |
Real-Time Simulation of a Complete PMSM Drive a 10 µs Time-Step Authors : Christian Dufour, Hisanori Yamasaki, Jean Bélanger, Masaya Harakawa, Simon Abourida, Tetsuaki Nagano Published at : Abstract : This paper presents a description and results of the fastest-ever-reported, PC-based real-time (RT) simulator of an AC drive. The RT simulator is used to simulate a complete PMSM drive circuit in a Hardware-In-The-Loop (... |
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Sep 2003 |
Real-Time Simulation of Switched Reluctance Motor Drives Authors : Mark Ehsani, Simon Abourida Published at : Abstract : This presentation includes an introduction on why real-time simulation of motor drive should be used. It then shows, the configuration of the SRM inverter, the basic equations of the drive, the inductance based model of... |
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Dec 2002 |
Real-Time Simulation of Hybrid Electric Vehicle Traction Drives Authors : Christian Dufour, Jean Bélanger, Simon Abourida Published at : Abstract : This paper presents a real-time electric vehicle traction drive simulator along with two publications. The first application is a double IGBT bridge inverter connected to an induction motor through an inter phase... |
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Feb 2002 |
Real-Time PC-Based Simulator of Electric Systems and Drives Authors : Biao Yu, Christian Dufour, Guillaume Murere, Jean Bélanger, Nicolas Léchevin, Simon Abourida Published at : Abstract : This paper presents a novel computer-based tool for real-time simulation and rapid control prototyping of power electronic systems and drives. The tool consists of innovative algorithmic software (ARTEMIS) for the fixed-... |
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Dec 2001 |
Induction Motor Control for HEVs Authors : Keith J. McKensie, Zhong Du Published at : Abstract : This presentation is an example given from Oak Ridge National Laboratory and The University of Tennessee about the three phase inverter for electric drives, voltage and current sensor boards, three phase PWM generator,... |
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Sep 2001 |
Accurate Real-Time Simulation of AC Inverter with Switching Event Compensation in ARTEMIS Authors : Christian Dufour, Jean Bélanger, Simon Abourida Published at : Abstract : This paper presents simulation software that allows the efficient and accurate fixed-time-step simulation of complex switched electrical systems. The software, named ARTEMIS (Advanced Real-Time Electro-Mechanical... |
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Sep 2001 |
Accurate Real-Time Simulation of Static-Var Compensator with Switching Events Compensation using ARTEMIS Authors : Christian Dufour, Jean Bélanger, Simon Abourida Published at : Abstract : This paper presents simulation software that allows the efficient and accurate fixed-time-step simulation of complex event-based electrical systems. The software, named ARTEMIS (Advanced Real-Time Electro-Mechanical... |
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Sep 2001 |
Real-Time Closed-Loop Control of a 6-Pulse Rectifier with Switching-Event Compensation in Artemis Authors : Christian Dufour, Jean Bélanger, Simon Abourida Published at : Abstract : This short paper presents the results of testing ARTEMIS™ Advanced Real-Time Electro-Mechanical Transient Simulator on the simulation of a 6-pulse thyristor converter. The tests highlight the ARTEMIS Discrete-Time... |
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Sep 2001 |
Accurate Simulation of Thyristor Controlled Reactor with Switching Event Compensation in ARTEMIS Authors : Christian Dufour, Jean Bélanger, Simon Abourida Published at : Abstract : This paper presents new simulation software that allows the efficient and accurate fixed-time-step simulation of complex switched electrical systems. The software, named ARTEMIS accurately simulates time-segment linear... |
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Nov 2000 |
Effective Real-time Simulations of Event-Based Systems Authors : Alain Rabbath, Jean Bélanger, Moussa Abdoune Published at : Abstract : This paper presents a set of novel tools that allow the efficient simulation, at fixed time steps, of event-based dynamic systems. The so-called RT-EVENTS library is an innovative toolbox that can be used with the... |
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Sep 2000 |
Simulation of Kundur’s Four-Machine, Two-Area Power System Under PSB/ARTEMIS/RT-LAB Authors : Guillaume Murere, Jean Bélanger, Nicolas Léchevin Published at : Abstract : This application note explains a two areas, four machines power system is considered in this note in order to demonstrate numerical advantages of ARTEMIS’ fixed-step-size integration method versus Tustin method currently... |
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Sep 2000 |
Ford V6 Engine Simulation Acceleration Authors : Wensi Jin Published at : Abstract : In a rapid prototyping environment, internal combustion engine control systems are difficult to model and to simulate, especially within both fast and real-time simulation settings. A solution to the problems of long... |
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