RT-LAB Description
RT-LAB is OPAL's real-time simulation program that combines performance and enhanced user experience. RT-LAB is fully integrated with MATLAB/Simulink® and allows for the most complex model-based design to interact with real-world environments. It allows for complex simulations in real-time, including those in aerospace, power electronics and power systems.
RT-LAB was first applied on the Canada Arm of the Canadian Space Agency almost 20 years ago. It has revolutionized systems engineering in space, on ground, and at sea. RT-LAB allows engineers and scientists to quickly develop new prototypes and perform the most rigorous testing required for new technologies.
RT-LAB Alternatives
SPEC Innovations’ leading model-based systems engineering solution is designed to help your team minimize time-to-market, reduce costs, and mitigate risks, even with the most complex systems. Available as both a cloud-based and on-premise application, it offers an intuitive graphical user interface accessible through any modern web browser.
Innoslate's comprehensive lifecycle capabilities include:
• Requirements Management
• Document Management
• System Modeling
• Discrete Event Simulation
• Monte Carlo Simulation
• DoDAF Models and Views
• Database Management
• Test Management with detailed reports, status updates, results, and more
• Real-Time Collaboration
And much more.
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Azore is software for computational fluid dynamics. It analyzes fluid flow and heat transfers. CFD allows engineers and scientists to analyze a wide range of fluid mechanics problems, thermal and chemical problems numerically using a computer. Azore can simulate a wide range of fluid dynamics situations, including air, liquids, gases, and particulate-laden flow. Azore is commonly used to model the flow of liquids through a piping or evaluate water velocity profiles around submerged items. Azore can also analyze the flow of gases or air, such as simulating ambient air velocity profiles as they pass around buildings, or investigating the flow, heat transfer, and mechanical equipment inside a room. Azore CFD is able to simulate virtually any incompressible fluid flow model. This includes problems involving conjugate heat transfer, species transport, and steady-state or transient fluid flows.
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System Composer
System Composer™ facilitates the detailed specification and evaluation of architectures within the realm of model-based systems engineering and software architecture modeling. By utilizing System Composer, users can effectively allocate requirements while enhancing an architecture model, which can subsequently be designed and tested in Simulink®. Users have the flexibility to create architecture models composed of components and interfaces either from scratch, by importing from other tools, or by leveraging the architectural elements already present in Simulink designs. Furthermore, it allows for the representation of a system through various architecture models, enabling the establishment of direct connections between them through model-to-model allocations. Behavioral aspects can be documented using sequence diagrams, state charts, or Simulink models, providing a comprehensive overview of system dynamics. Additionally, you can specify and simulate the order of execution for component functions, and even generate code from your software architecture models utilizing tools like Simulink and Embedded Coder®. This seamless integration ensures a robust framework for developing complex systems efficiently.
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Simulink
Develop and test your system using Simulink prior to implementing it on actual hardware. This allows you to explore and apply innovative designs that might typically be overlooked, all without the need to engage in C, C++, or HDL programming. By modeling both the system you are testing and the physical plant, you can investigate a broader design landscape. Your entire team can benefit from a unified multi-domain platform that simulates the interactions of all system components. You can also package and share your simulation results with team members, suppliers, and clients for collaborative feedback. This approach helps minimize costly prototypes by allowing you to experiment with scenarios that might otherwise be deemed too risky or impractical. Use hardware-in-the-loop testing and rapid prototyping to confirm your design's effectiveness. With this method, you can ensure traceability throughout the process, from requirements gathering to design and code development. Rather than manually crafting thousands of lines of code, you can automatically generate high-quality C and HDL code that mirrors your original Simulink model. Finally, deploy this code directly onto your embedded processor or FPGA/ASIC for seamless integration and operation. This comprehensive approach not only streamlines development but also enhances overall project efficiency.
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Integrations
No Integrations at this time
Company Details
Company:
OPAL-RT TECHNOLOGIES
Year Founded:
1997
Headquarters:
Canada
Website:
www.opal-rt.com/software-rt-lab/
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Product Details
Platforms
Windows
Linux
Types of Training
Webinars
In Person
RT-LAB Features and Options
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