ASM Bike: Real-Time Simulation for Next-Generation Motorcycle Development
- 高级驾驶辅助系统
- HIL 测试
- SIL测试
- 仿真建模
12:06min
概述
How do you develop motorcycles that are becoming increasingly safer, smarter, and more connected – without investing time and money in time-consuming tests? Our video explores exactly this question and shows how modern simulation is setting new standards in two-wheeler development.
The motorcycle industry is undergoing a transformation: driver assistance systems, electrification, and connectivity are significantly increasing the demands on development and validation. Traditional testing methods quickly reach their limits, especially with two-wheelers – particularly when it comes to reproducible results and the reliable analysis of critical riding situations.
With ASM Bike, dSPACE introduces a powerful, real-time-capable simulation solution that addresses these challenges. The platform accurately models the complex dynamics of motorcycles – with detailed multibody simulation, realistic rider maneuvers, and an open Simulink architecture for maximum flexibility.
Combined with tools such as ControlDesk, ModelDesk, and AURELION, it creates an end-to-end development environment, from parameterization and visualization to sensor data simulation. This enables efficient testing and validation of rider assistance systems, electric powertrains, and connected functions – from model-in-the-loop (MIL) through software-in-the-loop (SIL) to hardware-in-the-loop (HIL).
The result is fewer physical prototypes, reproducible tests, and faster, more reliable development – leading to reduced development times and costs in a consistent, integrated environment.
主讲
Norbert Meyer
Vehicle Simulation Manager - Automated Driving & Software Solutions, dSPACE
FAQ
Q1: What is ASM Bike, and who benefits from it?
A1: ASM Bike is a real-time-capable simulation solution for motorcycles and other two-wheeled vehicles. It is designed for OEMs and suppliers who want to efficiently develop and validate rider assistance systems, electric powertrains, and connected features.
Q2: Why is simulation so important in motorcycle development?
A2: The dynamics of two-wheeled vehicles are particularly complex and difficult to replicate. Simulation makes it possible to test critical riding situations – with or without surrounding traffic – safely, efficiently, and reproducibly long before physical prototypes are available.
Q3: What makes ASM Bike particularly realistic?
A3: ASM Bike models motorcycle dynamics in detail using multibody simulation and calculates rider inputs in the longitudinal and lateral directions for each riding situation. This makes it possible to simulate even challenging and critical scenarios in a realistic manner.
Q4: How does ASM Bike fit into existing development processes?
A4: Thanks to its open Simulink architecture, ASM Bike can be flexibly customized and seamlessly integrated into existing workflows. In combination with ControlDesk, ModelDesk, and AURELION, it creates an end-to-end development environment.
Q5: Which test phases are supported?
A5: ASM Bike supports all standard development phases: from model-in-the-loop (MIL) to software-in-the-loop (SIL) and hardware-in-the-loop (HIL). This enables functions to be validated early and throughout the entire development process.
Q6: What advantages does ASM Bike offer for development?
A6: The solution reduces the need for physical prototypes, enables reproducible testing, and accelerates development processes – while also improving safety and efficiency. ASM Bike integrates seamlessly into the dSPACE tool chain and can be combined with solutions for traffic simulation, physics-based sensor simulation in AURELION, and dSPACE test systems such as DARTS for camera or radar validation. This creates a consistent validation environment for the efficient validation of modern driver assistance and vehicle functions.