期刊文献+

鱼雷活塞式凸轮发动机的智能控制设计 被引量:1

Intelligent control design of torpedo piston cam engine
下载PDF
导出
摘要 为了提高鱼雷活塞式凸轮发动机的动力输出和智能控制能力,提出一种基于正反向旋转双轴输出控制的鱼雷活塞式凸轮发动机的智能控制方法。构造鱼雷活塞式凸轮发动机控制约束参量模型,发动机采用转阀配齐方法进行燃气热能驱动控制,采用锥形滚动轴承转动调节方法进行凸轮发动机的运转工质调节,利用正反向旋转双轴输出调节方法提高发动机驱动机械功,结合单片机进行鱼雷活塞式凸轮发动机的计算机智能控制,提高鱼雷活塞式凸轮发动机输出增益。实验测试结果表明,采用该方法进行鱼雷活塞式凸轮发动机控制的智能性较好,人机交互性较强,发动机的燃料工质效率较高,提高了鱼雷发动机的输出稳定性和连续运转能力。 In order to improve the power output and intelligent control ability of torpedo piston cam engine, an intelligent controlmethod of torpedo piston cam engine based on forward and backward rotation double axis output control is proposed. The controlconstraint parameter model of torpedo piston cam engine is constructed. The engine adopts the rotating valve alignment method todrive the gas heat energy and the tapered rolling bearing to adjust the working medium of the cam engine. The forward and backwardrotation biaxial output regulation method is used to improve the driving mechanical power of the engine, and the computer intelligentcontrol of the torpedo piston cam engine is carried out in combination with the single chip microcomputer to improve the output gainof the torpedo piston cam engine. The experimental results show that this method has better intelligence, better man -machineinteraction and higher efficiency of fuel working fluid in the control of torpedo piston cam engine. The output stability and continuousoperation ability of torpedo engine are improved.
作者 张在炳 ZHANG Zaibing(No.91640 Troops of PLA,Zhanjiang Guangdong 524064,China)
机构地区 中国人民解放军
出处 《智能计算机与应用》 2018年第6期78-81,84,共5页 Intelligent Computer and Applications
关键词 活塞式凸轮发动机 智能控制 鱼雷 piston cam engine intelligent control torpedo
  • 相关文献

参考文献7

二级参考文献85

  • 1程永.面源红外假目标特征参数分析[J].水雷战与舰船防护,2012,20(1):72-73. 被引量:6
  • 2刘浩,戴居丰.基于系统分割的保留非线性快速P-Q分解状态估计法[J].电网技术,2005,29(12):72-76. 被引量:12
  • 3王仲生,何红,陈钱.小波分析在发动机早期故障识别中的应用研究[J].西北工业大学学报,2006,24(1):68-71. 被引量:18
  • 4耿卫国,徐涛,王祁.基于MSPCA的液体火箭发动机试车台氢供应系统传感器故障诊断方法[J].宇航学报,2006,27(6):1142-1146. 被引量:8
  • 5Bakshi R B.Multiscale PCA with application to multivriate statistical process monitoring[J].AIChE Journal, 1998, 44(7): 1596-1610.
  • 6Manish M, Henry, Joe Q S, et al.Multivariate process monitoring and fault diagnosis by multi-scale PCA[J].Computers and Chemical Engineering, 2002, 26(9): 1281-1293.
  • 7程利军.基于近场声压的发动机故障诊断研究[D].军械工程学院硕士论文,2008:13:14.
  • 8LOKRITI A, ZIDANI Y, DOUBABI S. Fuzzy logic control contri-bution to the direct torque and flux control of an induction machine[C ]//2011 International Conference on Multimedia Computingand Systems (ICMCS),April 7 -9 ,2011,Ouarzazate, Morocco.2011:1 -6.
  • 9UDDIN M, RADWAN T, RAHMAN M. Performance of fuzzy-log-ic-based indirect vector control for induction motor drive[ J]. IEEETransactions on Industry Applications, 2002 , 38(5) : 1219 - 1225.
  • 10FNAIECH M A,BETIN F,NAHID B,et al. Control position of afaulted six phase induction machine (6PIM) using sliding modecontrol [ C ] //The 14th IEEE Mediterranean Electrotechnical Con-ference ,May 5-7,2008 , Ajaccio,France. 2008:502 -507.

共引文献174

同被引文献11

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部