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Suppression of Acoustic Noise of Position Sensorless Adaptive Positioning Servo System Based on DyCE Principle

机译:基于DICE原理的基于DICE原理的位置无传感器自适应定位伺服系统声学噪声的抑制

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This paper proposes suppression of acoustic noise of position sensorless adaptive positioning servo system based on DyCE principle. In general, high-frequency voltage injection based position estimation methods for standstill and extremely-low speed operation is commonly utilized, which utilize the saliency caused by the rotor structure of IPMSM. This system causes the magnetic noise associated with the injected frequency of audible frequency because the injected voltage increases the audible components in the motor current. In this approach, decreasing the injected voltage is necessary to suppress the magnetic noise, which results in that the estimation performance deteriorates. This paper proposes the variable amplitude strategy of the injected high frequency voltage. Finally, the feasibility of the proposed method is shown using some experimental results.
机译:本文提出了基于DICE原理的基于DICE原理的定位无传感器自适应定位伺服系统声学噪声的抑制。通常,通常利用用于静止和极低速度操作的高频电压喷射的位置估计方法,其利用IPMSM转子结构引起的显着性。该系统导致与可听频率的注入频率相关的磁噪声,因为注入的电压增加了电动机电流中的可听分量。在这种方法中,需要降低注入的电压以抑制磁噪声,这导致估计性能劣化。本文提出了注入的高频电压的可变幅度策略。最后,使用一些实验结果显示所提出的方法的可行性。

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