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SIMCENTER AMESIM

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SIMCENTER AMESIM

Simcenter Amesim is the leading integrated, scalable system simulation platform, allowing system simulation engineers to virtually assess and optimize the performance of mechatronic systems. This will boost overall systems engineering productivity from the early development stages until the final performance validation and controls calibration. Simcenter Amesim combines ready-to-use multi-physics libraries with the application- and industry-oriented solutions that are supported by powerful platform capabilities, to let you rapidly create models and accurately perform analysis. This open environment can be easily coupled with major computer-aided engineering (CAE), computer-aided design (CAD), and controls software packages.

flexiable

An open and powerful platform is at the core of Simcenter Amesim software. It offers you cutting-edge technologies and aligns with your processes at the enterprise level. Thanks to its seamless user experience, you can focus on innovating.

For high-performance computing (HPC) or real-time simu-lation, you can create, analyze and run your multiphysics models efficiently and almost everywhere. Its multiple interfaces and support of FMI and Modelica standards make Simcenter Amesim one of the most interoperable platforms on the market.

Advanced pre- and post processing tools allow you to gain in-depth information regarding your systems. You can customize model processing and analysis using easy-to-configure apps. Optimization and design exploration capabilities enable you to configure your system right the first time. Simulator scripting helps automate a large part of your simulation activities.

benifit solutions

ENABLING COMPANY-WIDE WORKFLOWS

To extend the implementation of system simulation, Simcenter Amesim facilitates the customization, automa-tion and integration for your vertical applications. It can be integrated into your CAD, CAE or process integration and design optimization (PIDO) processes to deliver data conti-nuity from CAD and experiments to system simulation.

Model, Predict & Optimize System Performance Across the Product Lifecycle

Today’s engineering landscape requires faster innovation, shorter development timelines, and uncompromising product quality. As products grow more sophisticated—spanning mechanical, electrical, hydraulic, pneumatic, and thermal domains—traditional design processes can no longer keep pace.

Simcenter Amesim® allows manufacturers to create accurate, dynamic digital twins of complex mechatronic systems early in the design phase. By leveraging advanced simulation, engineering teams can predict system behavior, enhance performance, minimize costly prototypes, and make well-informed design decisions sooner.

Why Simcenter Amesim?

  • ✔ Accurately predict system-level behavior before building physical prototypes
  • ✔ Rapidly explore and optimize multiple design concepts
  • ✔ Reduce the need for physical testing and lower overall development costs
  • ✔ Enable seamless collaboration between mechanical, electrical, and controls engineering teams
  • ✔ Accelerate time-to-market with validated, early-stage simulation

Simcenter Amesim empowers you to engineer the right product, the first time—delivering innovation, quality, and speed with confidence.

What Makes Simcenter Amesim a Leading System Simulation Platform?

Simcenter Amesim is a comprehensive platform designed for end-to-end systems engineering. With a rich set of multiphysics libraries, robust solvers, and open integration options, engineering teams can easily simulate and analyze multi-domain systems.

Simcenter Amesim enables engineers to quickly create 1D simulation models representing the full behavior of mechanical, electrical, hydraulic, pneumatic, and thermal systems—right from the earliest design phases.

  • Virtual prototyping of concepts
  • Architecture trade-off studies
  • Performance predictions before hardware
  • Development of control strategies

Access industry-proven, pre-validated component libraries for:

  • Hydraulics & pneumatics
  • Electrics & electromechanics
  • Thermal & HVAC
  • Internal combustion engines
  • Powertrain & vehicle dynamics
  • Flight dynamics
  • Marine, energy, heavy equipment, and more

Seamlessly connect Simcenter Amesim with your enterprise engineering environment:

  • Major CAD & CAE tools
  • Control software (Simulink, etc.)
  • FMI & Modelica standards
  • Teamcenter integration
  • Simcenter 3D, STAR-CCM+, FLOEFD, and more

Ensure end-to-end continuity from CAD and early design, through system simulation, to physical testing and validation.

Run Amesim models:

  • In real time for HIL/SIL test environments
  • On high-performance computing (HPC) clusters
  • In the cloud
  • For large-scale, automated batch simulations

Gain faster insights, dramatically boost productivity, and tackle large simulation projects with confidence.

Take simulation further with powerful customization and automation tools:

  • Automate repetitive tasks and simulation workflows
  • Create custom GUIs tailored to your process
  • Perform design optimization and sensitivity analyses
  • Efficiently explore the system design space

Industry Applications of Simcenter Amesim

Simcenter Amesim is used across automotive, aerospace, heavy equipment, industrial machinery, marine, energy, and consumer goods industries. A powerful set of dedicated capabilities supports each domain.

  • Optimize engines, transmissions, electrified powertrains
  • Improve vehicle thermal management
  • Balance comfort, NVH, fuel efficiency, drivability
  • Validate controls with co-simulation

OEMs have reduced prototypes by up to 10× and development time by 30% using Amesim.

  • Fuel systems
  • Environmental control systems
  • Landing gear
  • Electrical networks
  • Flight dynamics

Supports the Virtual Integrated Aircraft (VIA) approach.

  • Hydraulic and pneumatic systems
  • Actuators & drive systems
  • Thermal systems
  • Vibration reduction
  • Energy efficiency

Manufacturers use Amesim to boost productivity, reliability, and machine throughput.

  • Fuel consumption prediction
  • Hybrid/electric architecture evaluation
  • Thermal system design
  • Vehicle system dynamics analysis
  • Hydraulic actuation modeling
  • Propulsion performance
  • Hybrid systems
  • HVAC
  • Crane systems
  • Overall vessel efficiency
  • Gas turbines
  • Oil & gas equipment
  • Subsea systems
  • Renewable energy (wind turbine modeling)
  • Refrigeration loops
  • Heat pumps
  • Compressors
  • Power consumption
  • Energy efficiency optimization
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