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Current-sensor-based predictive current control of a synchronous reluctance motor fed by a six-switch three-phase inverter

机译:六开关三相逆变器供电的同步磁阻电动机的基于电流传感器的预测电流控制

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In this study, we propose a current-sensor-based predictive current control (CSBPCC) for six-switch three-phase (SSTP) inverter-fed synchronous reluctance motor (SynRM) drives. Generally speaking, two current sensors are used for detection of a- and b-phase stator currents of a SynRM drive system, respectively. In each sampling interval, the stator current will be read once rather than twice. After that, the past current variation can be saved and classified according to different switching states generated by the inverter. Next, the sampled stator current and the previously saved current variations are used to predict the future stator current without calculating the back-EMF or any motor's parameter. The next switching state can be chosen by minimizing a cost function to control the inverter directly in the next sampling interval. For comparison purposes, a traditional hysteresis current control (HCC) and the proposed predictive current control are adopted to test their current tracking performance under different operations through some simulations.
机译:在这项研究中,我们提出了一种基于电流传感器的预测电流控制(CSBPCC),用于六开关三相(SSTP)逆变器供电的同步磁阻电动机(SynRM)驱动器。一般而言,两个电流传感器分别用于检测SynRM驱动系统的a相和b相定子电流。在每个采样间隔中,定子电流将被读取一次,而不是两次。之后,可以根据逆变器产生的不同开关状态保存和分类过去的电流变化。接下来,在不计算反电动势或任何电动机参数的情况下,使用采样的定子电流和先前保存的电流变化量来预测未来的定子电流。可以通过最小化成本函数来选择下一个开关状态,以在下一个采样间隔内直接控制逆变器。为了进行比较,采用传统的磁滞电流控制(HCC)和拟议的预测电流控制,通过一些仿真来测试它们在不同操作下的电流跟踪性能。

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