首页> 外文期刊>Applied Computational Electromagnetics Society journal >Eccentricity Compensation in Switched Reluctance Machines via Controlling Winding Turns/Stator Current: Theory, Modeling, and Electromagnetic Analysis
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Eccentricity Compensation in Switched Reluctance Machines via Controlling Winding Turns/Stator Current: Theory, Modeling, and Electromagnetic Analysis

机译:通过控制绕组匝数/定子电流来补偿开关磁阻电机的偏心率:理论,建模和电磁分析

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摘要

In this paper, a new eccentricity compensation method for Switched Reluctance Machines (SRMs) is presented. In this regard, the dependency of radial force (RF) on variation of number of turns for stator coils and fault level is demonstrated analytically and principle of the new compensation strategy is introduced as well. This strategy is implemented on an SRM utilizing Finite Element Method (FEM) under different fault conditions. This approach is accomplished through switching among the various arrangements in the number of turns for the coils on the stator poles; hence, unbalanced magnetic force (UMF) is controlled without additional auxiliary coils. Simultaneously, regulating the stator currents guarantees the motor torque is not diminished. This comprehensive approach is suitable for different types and structures of SRMs and will compensate or control eccentricities in a wide range of eccentricity faults namely 10%-70% while motor performance is not impaired.
机译:本文提出了一种新的开关磁阻电机偏心补偿方法。在这方面,通过分析证明了径向力(RF)对定子线圈匝数变化和故障水平的依赖性,并介绍了新的补偿策略的原理。该策略是在不同故障条件下利用有限元方法(FEM)在SRM上实现的。通过在定子极上的线圈的匝数之间的各种布置之间进行切换来实现该方法。因此,无需额外的辅助线圈即可控制不平衡磁力(UMF)。同时,调节定子电流可确保电机转矩不会降低。这种全面的方法适用于不同类型和结构的SRM,并且可以补偿或控制各种偏心故障(即10%-70%)中的偏心,而不会损害电机性能。

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