首页> 外文会议>International Forum on Strategic Technology >Design method of CAN BUS network communication structure for electric vehicle
【24h】

Design method of CAN BUS network communication structure for electric vehicle

机译:电动车辆罐总线网络通信结构的设计方法

获取原文

摘要

According to the communication structure of CAN BUS network on EV, this paper works out a SAE J1939 application layer protocol meet the system functional requirements, and designs the software and hardware for the system. First, design the CAN BUS work nod for EV, including the master node, the light node, air conditioning node, doors and instrument node, etc, and the draw the CAN BUS topology diagram. Meanwhile, according to the concrete situation of EV, work out an application layer protocol that consistent with the SAE J1939 protocol, and the information allocation table and message structure chart of CAN BUS network node is also presented. Secondly, design the hardware and software for the CAN BUS communication network. Hardware interface circuit mainly consist of CAN communication controller SJA1000, high-speed opt coupler 6N137 and CAN BUS driver 82C250, and design schematic circuit diagram for CAN bus system hardware. The software designs for CAN BUS network are mainly the design of CAN BUS data communication and exchange between nodes, and communication processing for switch-signal, analog signal. The design of software communication module includes CAN initialization unit, message sending unit, message receiving unit and the interrupt service unit. Finally, the CAN BUS network communication system the paper designed is applied to the new energy bus produced by CENS Energy-Tech Co., Ltd. which is dedicated in the Shanghai World Expo. From the battery voltage data collected when EV are running, we can see that the system is accurate, stable without number lost, frame dropping and transfer error in data communication. The design has practical value promoting the application of new energy vehicles.
机译:根据CAN总线网络在EV上的通信结构,本文采用SAE J1939应用层协议符合系统功能要求,并为系统设计软件和硬件。首先,设计CAN总线工作点头,包括主节点,光节点,空调节点,门和仪器节点等,以及绘制CAN总线拓扑图。同时,根据EV的具体情况,解决与SAE J1939协议一致的应用层协议,并且还呈现CAN总线网络节点的信息分配表和消息结构图。其次,设计CAN总线通信网络的硬件和软件。硬件接口电路主要由CAN通信控制器SJA1000,高速opt Cooler 6N137和CAN总线驱动器82C250组成,以及CAN总线系统硬件的设计示意电路图。 CAN总线网络的软件设计主要是CAN总线数据通信和节点交换的设计,以及用于开关信号的通信处理,模拟信号。软件通信模块的设计包括CAN初始化单元,消息发送单元,消息接收单元和中断服务单元。最后,CAN总线网络通信系统本文设计应用于CENS Energy-Tech Co.,Ltd。专用于上海世博会生产的新能源总线。从EV运行时收集的电池电压数据,我们可以看到系统准确,稳定,没有数字丢失,帧丢失和数据通信中的传输错误。该设计具有促进新能源汽车应用的实用价值。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号