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Estimation of On-Fly Phase Resistance of on 8/6 Switched Reluctance Motor for Sensorless Control

机译:无传感器控制8/6开关磁阻电动机的近飞相电阻估计

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摘要

Given that most sensorless methods use the “flux linkage” algorithm for their control, this paper deals with possibilities to improve this sensorless method. When using the sensorless “flux linkage” method it is necessary to know not only the values of phase voltages and currents, but also the correct value of the phase resistance. During the operation of the switched reluctance motor, the value of the phase resistance is significantly changing due to the temperature dependence. Such resistance error causes an inaccurate estimation of the flux linkage. For this reason, it was desirable to implement a sensorless control algorithm for estimating phase resistance. In this paper, the experimental results of the implemented algorithm for estimating the phase resistance under the sensorless operation of a switched reluctance motor are presented. The practical implementation of control of the switched reluctance motor is carried out using a control system with a 16-bit digital signal processor.
机译:鉴于大多数无传感器方法使用“磁通连杆”算法进行控制,本文涉及改善这种无传感器方法的可能性。当使用无传感器“磁通连杆”方法时,不仅需要了解相电压和电流的值,还需要相位电阻的正确值。在开关磁阻电动机的操作期间,由于温度依赖性,相电阻的值显着变化。这种阻力误差导致磁通连杆的不准确估计。因此,希望实现用于估计相电阻的无传感器控制算法。本文介绍了用于估计开关磁阻电动机的无传感器操作下的相位电阻的实施算法的实验结果。使用具有16位数字信号处理器的控制系统进行开关磁阻电动机的控制的实际实现。

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