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首页> 外文期刊>SAE International Journal of Passenger Cars - Electronic and Electrical Systems >Development and Implement of a Model-Based Design Controller for PEPS System
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Development and Implement of a Model-Based Design Controller for PEPS System

机译:基于模型的PEPS系统设计控制器的开发与实现

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摘要

PEPS (Passive Entry and Passive Start) system is gradually becoming a main stream option in automotive keyless entry application, which improves the convenience and vehicle anti-theft performance. Based on the complex functions and safety technical requirements of the PEPS controller, and due to the development method of the model-based system design widely used in the automotive electronics industry, this paper presents a model-based on the development of PEPS controller method, which introduces the process of modeling and automatic code generation for the PEPS controller. Through Simulink/Stateflow of PEPS controller using logic system modeling, the PEPS controller complex system functions are divided into different function layers with each functional layer modeling respectively, and implement logic function design by the graphical language. Based on the model, it describes the process of model debugging and validation, the coverage analysis of the model, MIL (Model In the Loop) testing and SIL (Software In the Loop) testing. Based on the automatic code generation tool called TargetLink software supplied by dSPACE Company and called Simulink/Embedded Coder supplied by MathWorks Company, automatic generated production code of the PEPS controller is achieved. This paper also describes the comparison of the process of generating C-code by Embedded Coder and TargetLink. In the case of ensuring the quality of the code generation, the model-based design method also contributes a lot to improve work efficiency, shorten the development cycle, reduce development costs, and enhance the quality and security of product.
机译:PEPS(被动进入和被动启动)系统正逐渐成为汽车无钥匙进入应用中的主流选择,从而提高了便利性和车辆防盗性能。基于PEPS控制器的复杂功能和安全技术要求,以及由于基于模型的系统设计在汽车电子行业中广泛使用的开发方法,本文提出了一种基于PEPS控制器方法的开发模型,其中介绍了PEPS控制器的建模和自动代码生成过程。通过采用逻辑系统建模的PEPS控制器Simulink / Stateflow,将PEPS控制器复杂的系统功能划分为不同的功能层,每个功能层分别建模,并通过图形语言实现逻辑功能设计。基于模型,它描述了模型调试和验证的过程,模型的覆盖范围分析,MIL(回路中的模型)测试和SIL(回路中的软件)测试。基于dSPACE公司提供的称为TargetLink软件的自动代码生成工具,以及MathWorks公司提供的名为Simulink / Embedded Coder的自动代码生成工具,可以自动生成PEPS控制器的生产代码。本文还介绍了嵌入式编码器和TargetLink生成C代码的过程的比较。在确保代码生成质量的情况下,基于模型的设计方法还有助于提高工作效率,缩短开发周期,降低开发成本并提高产品质量和安全性。

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