Reduction of vibration and acoustic noise of SRM with hybrid excitation method

J. Moon, Jongkwon Kim, Seok-Gyu Oh, Jin-Woo Ahn
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引用次数: 4

Abstract

Simple motor construction, low cost and fault tolerant power electronic drive have made the switched reluctance drive a strong contender for many applications. However, the switched reluctance drive does exhibit higher levels of vibration and acoustic noise than that of most competing drives. The main source of vibration in the switched reluctance drive is generated by rapid change of radial force when phase current is extinguished during commutation action. In this paper, a hybrid excitation method is proposed to reduce vibration and acoustic noise of the switched reluctance drive. The hybrid excitation has 2-phase excitation by long dwell angle as well as conventional 1-phase excitation. The vibration and acoustic noise are reduced because the scheme reduces abrupt change of excitation level by distributed and balanced excitation.
用混合激励方法降低SRM的振动和噪声
简单的电机结构,低成本和容错电力电子驱动使开关磁阻驱动成为许多应用的有力竞争者。然而,开关磁阻驱动确实表现出比大多数竞争驱动更高的振动和噪声水平。开关磁阻驱动的主要振动源是换向过程中相电流熄灭时径向力的快速变化。本文提出了一种混合激励方法来降低开关磁阻驱动器的振动和噪声。混合励磁既有长驻留角的两相励磁,也有常规的单相励磁。该方案通过分布和平衡激励,减少了激励水平的突变,从而降低了振动和噪声。
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