CarSim delivers the most accurate, detailed, and efficient methods for simulating the performance of passenger vehicles and light-duty trucks. Current version: There are more than active CarSim seats, not including driving simulators or students. OEM users consistently find close agreement between CarSim predictions and test results. CarSim works as a standalone application; it does not require any other software to perform simulations.
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Today, I want to introduce carsim simulation program, and show how VehicleSim models can be extended using simulink Matlab. CarSim simulates the dynamic behavior of passenger cars, racecars, light trucks, and utility vehicles. CarSim animates simulated tests and outputs over calculated variables to plot and analyze, or export to other software such as MATLAB, Excel, and optimization tools.
Current version: 8. Use CarSim to design, develop, test and plan vehicle programs. Make better decisions involving vehicle dynamics, and spend less time. Use CarSim to prove initial concepts, select components, and perform advanced analysis of existing vehicles. Output plots and animations are obtained with a single button click.
Besides being versatile and interactive analysis tools, the graphics they produce can be easily inserted into reports and PowerPoint presentations. This is in contrast to esoteric multibody descriptions used in older simulation math models. As a result, CarSim users can usually get results for new vehicles with minimal time. CarSim comes with over 15 vehicles: class A-F passenger cars, some vans, utility vehicls, and light trucks.
Each 3D vehicle shape is automatically resized as needed to match the dimensions set for the vehicle model, and the overall color can be reset at run time to help distinguish between overlays of vehicle from different simulated tests. Validation testing continues as new features are added. OEM users consistently find close agreement between CarSim predictions and actual test results.
The CarSim math models cover the complete vehicle system and its inputs from the driver, ground, and aerodynamics. Use these options to add advanced controllers or extend the detail in subsystem or component models such as tires, brakes, powertrain, etc.
CarSim combines a complete vehicle math model with high computational speed. Besides providing correct nonlinear equations for fairly complicated models, the machine-generated equations are highly optimized to provide fast computation. CarSim models typically run more than ten times faster than real time on a 3 GHz PC, so you always get results quickly.
This speed also helps with software that requires many repetitions optimization, design-of-experiments, etc. CarSim has all the tools you need to predict vehicle dynamics behavior in one integrated package, with the capability of working with other software to extend its capabilities even further.
It combines the accuracy and validation resulting from decades of research in vehicle dynamics with the ease-of-use associated with modern video games and Internet browsers. CarSim includes everything needed to simulate vehicle tests and view the results, yet it is priced at a fraction of the cost of other commercial vehicle dynamics software. Run in Simulink. I would like ton know if CarSIM can measure the lateral acceleration experienced by the driver. Assuming that the driver is a moving object.
Carsim Introduction Video CarSim simulates the dynamic behavior of passenger cars, racecars, light trucks, and utility vehicles. What If? Extensible The CarSim math models cover the complete vehicle system and its inputs from the driver, ground, and aerodynamics. Fast CarSim combines a complete vehicle math model with high computational speed. Cost Effective, Stable, Reliable CarSim has all the tools you need to predict vehicle dynamics behavior in one integrated package, with the capability of working with other software to extend its capabilities even further.
This video is about Carsim with Simulink. Share this. Hello, I would like ton know if CarSIM can measure the lateral acceleration experienced by the driver.
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Altair Activate™ and CarSim FMI Tutorial Video
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Robotics and Human Motion blog
This short tutorial introduces the Functional Mockup Interface and how to use Activate and CarSim for co-simulation for coupled systems analysis. Playlist highlighting the key capabilities of Altair Activate. Presenter: Christian Kehrer, Business Development Manager, Altair This presentation discusses the multi-disciplinary evaluation of truck platooning, with the lead truck sending out acceleration, braking and steering signals for the following trucks to react accordingly. The benefits address safety requirements, fuel savings, traffic capacity and convenience. The presentation demonstrates why platooning requires a holistic approach in the sense of connecting different modeling and simulation methods for a virtual evaluation of this system of systems. In the end the presentation gives a quick outlook of similar works at the University of Applied Sciences Kaiserslautern in Germany.
Instructional/Demo Video Series
A DC motor comprised of mechanical and electrical subsystems. Two DC motors used to drive a belt. Two DC motors applied to a clutch plate. Notch filter used to remove unwanted frequencies noise from a signal. Inverted pendulum by coupling multibody dynamics with controls through co-simulation of MotionSolve and Activate. Math, signal, and physical based modeling.