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Rotor vibration control of hybrid pole bearingless switched reluctance motor with C-dump converter

机译:具有C-Dimp转换器的混合杆轴承开关磁阻电动机转子振动控制

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摘要

Rotor vibration control during start up, acceleration and deceleration phases is one of the key problems besides stable levitation, in high-speed applications of bearingless switched reluctance motor (BSRM). In this paper, an effective intelligent sliding mode controller is proposed for suppressing the rotor vibration due to residual unbalance and external disturbance during levitation and motoring phases. The parameters of time-varying sliding surface for avoiding high control gains and chattering are adjusted integrating the sliding mode control (SMC) and features of fuzzy logic control. The experimental studies conducted on a prototype BSRM system confirm that the application of fuzzy SMC guarantees the robust performance with less chattering under model uncertainties and unknown external disturbances compared to classical sliding mode controller.
机译:转子振动控制在启动期间,加速和减速相是除稳定的悬浮外,在无轴承开关磁阻电动机(BSRM)的高速应用中的关键问题之一。在本文中,提出了一种有效的智能滑模控制器,用于抑制由于悬浮和电动阶段期间的残余不平衡和外部干扰引起的转子振动。用于避免高控制增益和抖动的时变滑槽的参数被调整集成滑动模式控制(SMC)和模糊逻辑控制的特征。在原型BSRM系统上进行的实验研究证实了模糊SMC的应用保证了与经典滑模控制器相比,根据模型不确定性和未知的外部干扰的缩小性能。

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