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无刷直流电机无位置换向控制 被引量:4

Angle Commutation Compensation of the Sensorless Brushless DC Motor
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摘要 电动汽车中由于空调压缩机制冷液具有腐蚀性,所以采用无位置无刷直流电机。一般的换相控制通过检测反电动势过零点而间接获得换相时刻,但是由于电机的非线性动态特性、温度、转速等因素的影响,难以得到准确的信息。文中利用神经网络的非线性任意逼近特性,提出一种基于神经元网络的电机相位补偿控制。首先由硬件电路获得有效的反电动势信息,再利用BP神经网络进行正确相位补偿,实现无刷直流电机的无位置传感器控制,获得了较好的效果。 It is necessary to decide the commutation angle properly in the sensorless DC motor control system, however, due to the dynamic nonlinearity, temperature and the rotor speed in the air-conditioner compressor of the electric vehicle, it is difficult to get the right time to commutation. Inthis paper, BP neural networks is used to compensate the commutation angle after the circuits detection of the basic information of the back EMF. This method can obtain the proper time for current to change phase.
机构地区 华东理工大学
出处 《微电机》 2004年第3期43-45,共3页 Micromotors
关键词 电动汽车 无刷直流电机 换向控制 位置传感器 brushless DC motor sensorless BP neural network commutation
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参考文献5

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同被引文献25

  • 1史婷娜,夏长亮,文德.基于DSP的无刷直流电机无位置传感器控制[J].仪器仪表学报,2002,23(z1):400-401. 被引量:6
  • 2牛百齐.变频空调中的无传感器无刷直流电机控制系统[J].自动化与仪器仪表,2005(5):58-60. 被引量:1
  • 3陈英姿,刘益才,杨智辉.冰箱组合式相变材料蓄冷的实验研究[J].制冷技术,2006,26(2):13-16. 被引量:9
  • 4李凌志,张文志,孟瑞锋.基于DSP的无刷直流电机伺服控制系统[J].机电工程,2007,24(5):66-69. 被引量:7
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  • 6Azzouz K,Leducq D,Gobin D.Performance enhancement of a household refrigerator by addition of latent heat storage.International Journal of Refrigeration,2008,31(5):892-901.
  • 7Yamada M,Fukusako S,Kawanami T.Performance analysis on the liquid-ice thermal storage system for optimum operation.International Journal of Refrigeration,2002,25(2):267-277.
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