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Silent low speed self-sensing strategy for permanent magnet synchronous machines based on subtractive filtering

机译:基于减法滤波的永磁同步电机静音低速自检测策略

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The inherent advantages of sensorless control related to reliability, efficiency and costs turn it to be a very interesting technology for automotive applications. Nevertheless, the generation of acoustic noises and current bandwidth limitations due to the injection of HF voltages near zero speed limits its applicability for such high-performance applications. In this work, a newly silent self-sensing strategy, which is achieved through the reduction of the injection frequency, is presented. A novel filtering strategy, based on signal reconstruction, is introduced in order to overcome the bandwidth limitation of the current controller. Moreover, the estimation disturbances in transients are minimized due to the use of a hybrid observer. Experimental results show the effectiveness of the proposed approach.
机译:与可靠性,效率和成本相关的无传感器控制的固有优势使其成为汽车应用中非常有趣的技术。然而,由于以接近零速的速度注入HF电压而产生的声音噪声和电流带宽限制限制了其在此类高性能应用中的适用性。在这项工作中,提出了一种通过降低注入频率来实现的新的静音自感应策略。为了克服电流控制器的带宽限制,提出了一种基于信号重构的新颖滤波策略。此外,由于使用了混合观测器,因此可以将瞬态估计干扰最小化。实验结果表明了该方法的有效性。

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