船舶电站发电机组自动切换电气控制故障排除系统设计
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  • 英文篇名:Design of automatic switching electrical control fault elimination system for ship power station generator sets
  • 作者:孙宇轩
  • 英文作者:SUN Yu-xuan;Suihua University, College of Electrical Engineering;
  • 关键词:电站 ; 电气控制 ; 故障排除
  • 英文关键词:power station;;electrical control;;troubleshooting
  • 中文刊名:JCKX
  • 英文刊名:Ship Science and Technology
  • 机构:绥化学院电气工程学院;
  • 出版日期:2019-04-23
  • 出版单位:舰船科学技术
  • 年:2019
  • 期:v.41
  • 基金:省教育厅基本科研业务费基础研究项目2018-KYYWF
  • 语种:中文;
  • 页:JCKX201908039
  • 页数:3
  • CN:08
  • ISSN:11-1885/U
  • 分类号:116-118
摘要
在全球一体化发展的过程中,海运属于最常见的货物运送方式,伴随船队规模的逐渐扩大,船舶发生事故的几率显著提高,导致国家与社会经济损失严重。尤其是船舶电站发电机组的故障,要想保证船舶行驶的安全性,必须要在短时间内对故障元件和性质进行判断并处理,保证系统尽快恢复运行状态。然而,船舶电站发电机组复杂化与智能化性能逐渐优化,使得科技水平明显提升,在故障发生后很难及时找到问题并解决。所以,必须要以船舶电站发电机组为出发点,科学合理地设计自动切换电气控制故障排除系统,进而全面改善船舶电站发电机组的运行状态,保证船舶海上航行的安全性。
        In the process of global integration development, shipping is the most common mode of cargo transportation.With the gradual expansion of the fleet size, the probability of ship accidents has increased significantly, resulting in serious national and social economic losses. Especially for the failure of the ship power station generator set, in order to ensure the safety of the ship's driving, it is necessary to judge and deal with the faulty components and properties in a short time to ensure that the system resumes operation as soon as possible. However, the complexity and intelligent performance of the generator set of the ship power station are gradually optimized, which makes the technology level significantly improved, and it is difficult to find the problem and solve it in time after the fault occurs. Therefore, it is necessary to take the ship power station generator set as the starting point, scientifically and rationally design the automatic switching electrical control fault elimination system, and then comprehensively improve the running state of the ship power station generator set to ensure the safety of the ship's maritime navigation.
引文
[1]袁成岗.船舶电气系统故障分析和保障措施探讨[J].科学大众(科学教育), 2017(12):191–192.
    [2]江东坡.船舶电气设备故障及其对策分析[J].中国水运,2017(10):18–19.
    [3]刘中山,薛士龙.船舶电站无功功率故障分析[J].船电技术,2017, 37(09):37–41.
    [4]黄乔铃.船舶电气的接地故障及其对应处理探究[J].建材与装饰, 2017(30):229–230.
    [5]林汉松.船舶电力系统继电保护分析[J].山东工业技术,2017(14):212.
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