船舶电力推进系统数据通信模块设计
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  • 英文篇名:Design of data communication module for marine electric propulsion system
  • 作者:张之枫 ; 孙爱芬
  • 英文作者:ZHANG Zhi-feng;SUN Ai-fen;Zhengzhou Electric Power Technology College;
  • 关键词:电力推进系统 ; 数据 ; 通信 ; 设计
  • 英文关键词:electric propulsion system;;data;;communication;;design
  • 中文刊名:JCKX
  • 英文刊名:Ship Science and Technology
  • 机构:郑州电力职业技术学院;
  • 出版日期:2019-07-23
  • 出版单位:舰船科学技术
  • 年:2019
  • 期:v.41
  • 语种:中文;
  • 页:JCKX201914035
  • 页数:3
  • CN:14
  • ISSN:11-1885/U
  • 分类号:104-106
摘要
现有的数据通信模块存在着稳定性低、数据处理速度慢的缺陷,为此提出海上船舶电力推进系统数据通信模块设计研究。根据现有数据通信模块的研究提出数据通信模块总体架构设计,以此为基础,对数据通信模块电路进行设计,主要包括串口通信电路、电源电路、复位电路与CAN通信接口电路设计,然后对程序开发环境进行搭建,以此为环境对串行通信程序与CAN通信驱动程序进行编写,至此实现了数据通信模块的设计与运行。通过测试得到,与现有的数据通信模块相比较,设计的海上船舶电力推进系统数据通信模块极大的提升了稳定性与数据处理速度,充分说明设计的数据通信模块具备更好的性能。
        The existing data communication module has the shortcomings of low stability and slow data processing speed. Therefore, the design of data communication module for marine electric propulsion system is proposed. According to the research of the existing data communication module, the overall architecture design of the data communication module is put forward. On this basis, the circuit of the data communication module is designed, mainly including serial communication circuit, power supply circuit, reset circuit and CAN communication interface circuit. Then, the development environment of the program is built, and the serial communication program and CAN communication driver are programmed as the environment. Write, so far to achieve the design and operation of data communication module. Through testing, compared with the existing data communication module, the designed data communication module of marine electric propulsion system greatly improves the stability and data processing speed, which fully shows that the designed data communication module has better performance.
引文
[1]文光澄.内河船舶电力推进系统的设计要点[J].船电技术,2017, 37(5):27–29.
    [2]王硕丰,倪凤燕,石磊.科学考察船电力推进系统的低噪声设计[J].船舶, 2017, 28(28):149–149.
    [3]张艳.移动自组织网络通信模块的设计与实现[J].现代电子技术, 2017, 40(10):54–57.
    [4]卫星导航模拟器模块间高速串行数据传输设计[J].电子设计工程, 2018, 26(17):140-144.

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