enDYNA basic is a professional software package for the real-time simulation of internal combustion engines.
Applications range from model-based function development and tests of engine control devices through to integration tests in a virtual vehicle and pre-calibration at hardware-in-the-loop simulators.
For sophisticated testing scenarios, enDYNA engine models provide various possibilities of malfunction simulation. The high model accuracy and good parameterization quality of the enDYNA Preprocessing tool allow precise and reliable statements to be made about the behavior of controllers and trouble-free operation.
Our open and modular model architecture implemented in a Matlab/Simulink environment allows easy and straightforward incorporation of your controller algorithms or models of user-specific components. You can make use of the full Matlab/Simulink functionality for simulation control and postprocessing of results. The implementation of typical driving maneuvers (e. g. driving cycles) is supported by open and ready-to-use example scripts and tables.
We offer enDYNA basic in five versions:
- enDYNA basic SI Package
for the simulation of naturally aspirated spark ignition engines with intake-manifold injection. - enDYNA basic SITC Package
for the simulation of turbocharged spark ignition engines with intake-manifold injection. - enDYNA basic FDI Package
for the simulation of naturally aspirated spark ignition engines with direct fuel injection. - enDYNA basic FDITC Package
for the simulation of turbocharged spark ignition engines with direct fuel injection. - enDYNA basic CRTD Package
for the simulation of turbocharged diesel engines with a common rail system or unit injectors.
enDYNA basic can be extended by the following add-ons:
- Cooling System Advanced
Two-circuit cooling system with various types of fans, heat exchangers and thermostats. - Exhaust System Advanced
Exhaust system with catalytic converter, secondary air path and lambda sensors. - Power Net System Advanced
Modular electric power net system.
