Modular and complete tool suite for the development and testing of numerous motorcycle control units
What is ASM Bike?
ASM Bike extends the dSPACE Automotive Simulation Models (ASM) with a dedicated solution for two‑wheelers. The model captures the full spectrum of driving behavior – from agile, lightweight scooters to powerful heavy road machines – and is designed for real‑time performance.
As an integral part of the ASM model suite, ASM Bike integrates seamlessly with other ASM libraries and the broader ASM tool chain, including full support for AURELION to enable realistic 3D visualization and physics‑based sensor simulation. This ensures consistent workflows across development, testing, and validation.
Like all ASM libraries, ASM Bike is developed in accordance with the principles of ISO 26262. This ensures that its model architecture, development processes, and verification methods meet the functional safety requirements for automotive applications.
Powerful road and scenario editors make it easy to create complex test situations intuitively, ensuring efficient workflows from concept to validation.
Application Areas
ASM Bike opens a broad range of development and testing possibilities for modern two-wheeler systems:
- Support for the development and validation of stability control functions such as cornering ABS and rear wheel lift control
- In combination with ASM Traffic and AURELION: comprehensive development of sensor-based advanced rider assistance systems (ARAS), including rear collision warning, autonomous emergency braking, and motorcycle adaptive cruise control (ACC)
- Support for powertrain testing by integrating high-fidelity powertrain models directly into the two-wheeler simulation, enabling realistic evaluation of drivetrain behavior, energy flows, and control strategies under a wide range of operating conditions – from component-level analysis to full-vehicle system tests
Key Benefits
- Open, modular, and scalable model architecture enabling easy model adaptations and seamless integration of additional use‑case‑specific models
- For MIL, SIL, HIL, and cloud applications: guarantees long-term, stable real-time performance on dSPACE HIL systems and ensures high SIL performance speed for local and scalable cloud executions
- Deep integration with dSPACE simulation tools for efficient parameterization, test case creation, measurement, and validation
- ISO 26262 certified, ensuring the highest level of functional safety
Functionality Overview
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