基于CAN的汽车网络化控制系统的可调度性分析与软件设计

A. Cheng, Ling Zhang, T. Zheng
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引用次数: 3

摘要

报文和总线负载的最坏响应时间是CAN总线可调度性分析的主要参数。本文通过引入填充位的概率模型,给出了不同长度报文中填充位的概率分布曲线。在给定的概率P下求得最大填充位,以减少对最坏情况响应时间和总线负载值的悲观情绪。以此为理论指导,设计并开发了固定优先级消息调度的调度分析软件。然后利用该软件分析了混合动力汽车信息的可调度性。在此基础上,进行了基于CANoe的仿真实验。结果表明,本文介绍的基于填充位概率模型的算法是正确的,所设计的软件是准确可靠的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The schedulability analysis and software design for networked control systems of vehicle based on CAN
The worst-case response time of the message and busload are the main parameters in scheduleability analysis for the Controller Area Network (CAN) bus. This paper gives the probability distribution curves of stuffed bits in message's different length by introducing the probability model of stuffed bits. It obtains the maximum stuffed bits under a given probability P, to reduce pessimism of the worst-case response time and busload value. Taking it as a theoretical guide, and we design and develop scheduling analysis software on fixed priority message scheduling. Then we use the software to analysis the scheduleability for the messages in a Hybrid Electric Vehicle. Furthermore, a simulation experiment based on CANoe was made to test the design. By comparing the results, it shows that algorithm, as we introduced, based on the probability model of stuffed bits is right, and the designed software is accurate and reliable.
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