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MODEL-BASED EMBEDDED SYSTEM DESIGN METHODOLOGY FOR AUTOMOTIVE APPLICATIONS

机译:汽车应用的基于模型的嵌入式系统设计方法

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The ever increasing complexity of embedded systems is driving the change in embedded software development from traditional approaches to model-based design methodology. The model-based design approach provides a number of benefits such as reducing software development time and cost, improving software quality through computationally intensive modeling, and real-time verification. This paper presents model-based embedded system design using a rapid prototyping system called Mototron. Models for individual components and the control strategies are developed in a simulation environment with MotoHawk, Simulink, and Stateflow software tools. The developed control algorithms and parameters are then tested using a calibration tool (MotoTune) that is connected to embedded system hardware. An electronic throttle control example is given in the paper to illustrate the major steps of model-based embedded system design using Mototron system.
机译:嵌入式系统的日益复杂性正推动嵌入式软件开发从传统方法向基于模型的设计方法的转变。基于模型的设计方法具有许多优势,例如减少软件开发时间和成本,通过计算密集型建模提高软件质量以及实时验证。本文介绍了一种使用称为Mototron的快速原型系统的基于模型的嵌入式系统设计。使用MotoHawk,Simulink和Stateflow软件工具在仿真环境中开发了各个组件的模型和控制策略。然后使用连接到嵌入式系统硬件的校准工具(MotoTune)对开发的控制算法和参数进行测试。本文给出了一个电子节气门控制示例,以说明使用Mototron系统进行基于模型的嵌入式系统设计的主要步骤。

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