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首页> 外文期刊>Power Electronics, IEEE Transactions on >Development and Experimental Tests of a Simple Neurofuzzy Learning Sensorless Approach for Switched Reluctance Motors
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Development and Experimental Tests of a Simple Neurofuzzy Learning Sensorless Approach for Switched Reluctance Motors

机译:开关磁阻电机的简单神经模糊学习无传感器方法的开发和实验测试

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Despite becoming competitive with ac and dc machines, the necessity for a shaft position transducer makes switched reluctance (SR) machines lose their low cost advantage, mainly as low power machines such as fans and pumps. Many techniques have been proposed for indirect rotor position detection for SR machines. However, their characteristics can be summed up as being based on a lookup table plus an interpolation algorithm, making them specific to a particular machine. For economic reasons and also dynamic performance, sensorless algorithms need a learning mechanism to allow them to adapt to a new SR machine or even adapt to changes in the SRM parameters. This paper presents a novel methodology for position sensor elimination for SR machines. Using the voltage from each conducting phase and the reference current signal as inputs, the rotor speed is first obtained as the output of a neurofuzzy learning system used as a “virtual” speed sensor. Then, the rotor position is determined by integrating the estimated value of speed. The effectiveness of the proposed sensorless technique was investigated through a series of real-time experiments on an SR drive system. The experimental results show that the suggested “virtual” speed sensor and corresponding rotor position can operate well in a sensorless SR speed control system.
机译:尽管与交流和直流电机相比具有竞争优势,但轴位置传感器的必要性使开关磁阻(SR)电机失去了其低成本优势,主要是风扇和泵等低功率电机。已经提出了许多用于SR机器的间接转子位置检测的技术。但是,它们的特性可以总结为基于查找表和插值算法,从而使其特定于特定机器。出于经济原因以及动态性能的考虑,无传感器算法需要一种学习机制,以使其能够适应新的SR机器,甚至适应SRM参数的变化。本文提出了一种用于SR机器的位置传感器消除的新颖方法。使用来自每个导电相的电压和参考电流信号作为输入,首先获得转子速度,作为用作“虚拟”速度传感器的神经模糊学习系统的输出。然后,通过积分速度的估计值来确定转子位置。通过在SR驱动系统上进行一系列实时实验,研究了所提出的无传感器技术的有效性。实验结果表明,建议的“虚拟”速度传感器和相应的转子位置在无传感器SR速度控制系统中可以很好地运行。

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