期刊文献+

基于单片机的大间隙磁力驱动系统控制电路设计及仿真

Control Circuit Simulation Design of Large Gap Magnetic Drive System Based on SCM
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摘要 基于非接触磁齿轮驱动研究,提出一种主动磁极静止式大间隙磁力驱动方式。针对这种新型的磁力驱动方式,设计了基于SCM(单片机)的斩波恒流功率放大磁场驱动系统控制电路,并进行了电路输出模拟仿真,实现了主动磁极静止式磁力驱动,有效地减小了感性线圈对电流的阻碍作用,实现了驱动电路的恒流输出,提高了系统高频响应能力,使驱动系统在大间隙、高转速情况下也具较强的驱动能力,同时具有良好的正反转和调速性能。 A new driving method that initiative magnetic pole always keeps quiescent was put forward, based on the study of non-contact magnetic gear drive. In allusion to this new driving method, a fire-new outside magnetic driving system of chopping wave constant current power amplifier was designed based on AT89S52, and the deferent circuit was simulated. This system realized the driving mode of quiescent initiative magnetic pole, and would effectually decreased the resistance of the electrical inductance loop which embarrasses the change of the current, and ultimately achieved constant current of the drive circuit, and increased the system's high frequency responding ability. Even under the circumstance of large gap and high rotate speed, the system has stronger driving ability and favorable capability of positive and negative rotate and timing.
出处 《仪表技术与传感器》 CSCD 北大核心 2009年第7期87-89,共3页 Instrument Technique and Sensor
基金 国家863计划项目(2006AA02Z4E8) 教育部博士点专项基金资助项目(20070533125) 湖南省教育厅资助科研项目
关键词 大间隙 磁场驱动 主磁极静止 SCM 斩波恒流 large gap magnetic field drive initiative magnetic pole keeps quiescent SCM chopping wave constant current
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参考文献14

  • 1IKUTA K, MAKITA S, ARIMOTO S. Non - contact magnetic gear for micro-transmission mechanism.//Proceedings of the 1991 IEEE Micro Electro Mechanical Systems, 1991 : 125 - 130.
  • 2KIKUCHI S, TSURUMOTO K. Design and characteristics of A new magnetic worm gear using permanent magnet. IEEE Transactions on Magnetics, 1993,29 (6) : 2923 - 2925.
  • 3NAGRIAL M H, RIZK J. Design and performance of a magnetic gear. Digests of the Intermag Conference. 2000, p HQ - 03.
  • 4HA K H,OH Y J,HONG J P,et al. Design and characteristic analysis of non-contact magnet gear for conveyor by using permanent magnet. Conference Record of the 2002 IEEE Industry Applications Conference, 2002.
  • 5徐先懂,龚中良,谭建平.基于外磁场耦合的血泵驱动系统[J].中南大学学报(自然科学版),2007,38(4):711-714. 被引量:11
  • 6FRAZIER O H, MYERS J, JARVIK K,et al. Research and development of an implantable, axial-flow left ventricular assist device: the Jarvik 2000 heart. The Annals of Thoracic Surgery, 2001,71 ( 3 ) : s125 - s132.
  • 7SHINN A J. Implantable left ventricular assist devices. Journal of Cardiovascular Nursing,2005,55 (20) : s22 - s30.
  • 8杨新清,严珩志,付伟华.一种管内壁自动清淤器磁转子的特性[J].机械设计,2006,23(5):20-22. 被引量:4
  • 9陈建伟,龚忠良,谭建平,陈新.基于单片机控制的微型轴流式血泵外磁驱动系统[J].机电一体化,2004,10(6):33-36. 被引量:3
  • 10赵克中,徐成海.磁力驱动真空动密封技术的发展和应用[J].真空,2003,40(1):21-24. 被引量:9

二级参考文献28

  • 1肖亮,陶学恒.新型的智能化液位温度测量系统[J].仪表技术与传感器,2005(12):22-24. 被引量:4
  • 2揭贵生,马伟明.一种基于自适应输入—输出线性化的无刷直流电机参数辨识方法[J].中南大学学报(自然科学版),2005,36(6):1069-1073. 被引量:4
  • 3姚良,张振仁.基于MODBUS协议的小环境恒湿系统设计[J].仪表技术与传感器,2006(1):35-37. 被引量:8
  • 4丁元杰.单片机原理及应用[M].北京:机械工业出版社,2000..
  • 5吴守箴 藏英杰.电气传动的宽调制技术[M].北京:机械工业出版社,1997..
  • 6Koji Ikutal. Non - contact Magnetic Gear for Micro transmission Mechanism[C]. Proceedings of the 1991 IEEE Micro Electro Mechanical Systems, Nara: Dept of Mechanical System Engineering,Kyushu Institute of Technology, 1991:125 - 130.
  • 7赵克中.稀土钴磁力传动的特性及其应用[A]..第七届国际稀土永磁材料及应用会议论文集[C].,1983..
  • 8王景海.水泵技术[M].北京:化学工业出版社,1993:21-22.
  • 9ANSYS公司.电磁场分析指南[M].北京:美国ANSYS公司北京办事处,2000:5—6.
  • 10唐兴波,范群波,张朝晖,等.ANSYS工程应用教程[M].北京:中国铁道出版社,2002:142—156.

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