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Experimental Study on Communication Delay of Powertrain System of Plug-In Hybrid Electric Vehicles

机译:插电混合动力电动汽车动力总成系统通信延迟试验研究

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摘要

In order to contrast and analyze the real-time performance of the powertrain system of a plug-in hybrid electric vehicle, a mathematical model of the system delay is established under the circumstances that the transmission adopts the CAN (controller area network) protocol and the TTCAN (time-triggered CAN) protocol, respectively, and the interior of the controller adopts the foreground-background mode and the OSEK mode respectively. In addition, an experimental platform is developed to test communication delays of messages under 4 different implementation models. The 4 models are testing under the CAN protocol while the controller interior adopts the foreground-background mode; testing under the CAN protocol while the controller interior adopts the OSEK mode; testing under the TTCAN protocol while the controller interior adopts the foreground-background mode, and testing under the TTCAN protocol while the controller interior adopts the OSEK mode. The theoretical and testing results indicate that the communication delay of the OSEK mode is a little longer than the one of the foreground-background mode. Moreover, compared with the CAN protocol, the periodic message has a better real-time performance under the TTCAN protocol, while the nonperiodic message has a worse one.
机译:为了对比和分析插入式混合动力电动车的动力系系统的实时性能,在传输采用CAN(控制器区域网络)协议的情况下建立了系统延迟的数学模型。 TTCAN(时间触发CAN)协议分别和控制器的内部分别采用前景背景模式和OSEK模式。此外,还开发了一个实验平台,以测试4个不同实现模型下的消息的通信延迟。 4型号在CAN协议下测试,而控制器内部采用前景背景模式;在CAN协议下测试,而控制器内部采用OSEK模式;当控制器内部采用前景背景模式时,在TTCAN协议下进行测试,并在控制器内部采用OSEK模式时在TTCAN协议下测试。理论和测试结果表明,OSEK模式的通信延迟比前景背景模式一部分长。此外,与CAN协议相比,周期性消息在TTCAN协议下具有更好的实时性能,而非主体消息具有更糟糕的信息。

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