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Distributed Communication System Design Based on Can Bus for Parallel-Serial Hybrid Electrical Vehicles

机译:串并混合动力汽车基于CAN总线的分布式通信系统设计

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Distributed network system based on Controller Area Network (CAN) protocol has been widely applied into the vehicle industries. CAN communication protocol for the parallel-serial hybrid electrical vehicles (PSHEV) has been designed in the paper. Real-time scheduling algorithms based on optimization periodic algorithm (OPA) with non-preemptive and preemptive scheduling are also proposed with an optimization goal function to decrease the delay time for sporadic tasks and increase the CPU utilization for a real-time controller. Then a kind of method of solving the OPA have been designed namely exhaust algorithm (EA). With a view to avoid real vehicles experiment failures in advance, it is necessary for us to make an experiment set-up to verify the validity of the CAN protocol designed and OPA for the PSHEV. So the related hardware circuits for testing CAN system have been made. Finally, communication experiments are made based on CAN protocol proposed above. The results show the CAN protocol and OPA scheduling algorithm for the PSHEV are valid, all messages can be transmitted and received efficiently and completely avoiding the occurrence of loss of messages in the process of communications in all nodes of the system and the optimized periodic tasks as a result of OPA scheduling algorithm can decrease the delay time for sporadic tasks and increase the CPU utilization for a real-time controller.
机译:基于控制器局域网(CAN)协议的分布式网络系统已被广泛应用于汽车行业。本文设计了用于并行-串行混合动力汽车(PSHEV)的CAN通信协议。还提出了基于优化周期算法(OPA)的非抢占式和抢占式调度的实时调度算法,该算法具有优化目标函数,可以减少零星任务的延迟时间,并提高实时控制器的CPU利用率。然后设计了一种求解OPA的方法,即排气算法(EA)。为了避免实际车辆实验失败,我们有必要进行实验设置,以验证针对PSHEV设计的CAN协议和OPA的有效性。因此,已经完成了用于测试CAN系统的相关硬件电路。最后,基于以上提出的CAN协议进行了通信实验。结果表明,用于PSHEV的CAN协议和OPA调度算法是有效的,可以有效地发送和接收所有消息,并且完全避免了系统所有节点在通信过程中消息丢失的发生以及优化的周期性任务。 OPA调度算法的结果可以减少零星任务的延迟时间,并提高实时控制器的CPU利用率。

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