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Investigation on Contribution of Inductance Harmonics to Torque Production in Multiphase Doubly Salient Synchronous Reluctance Machines

机译:多相双凸极同步磁阻电机中转矩谐波对转矩产生的贡献研究

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This paper investigates the contribution of each order inductance harmonic to the torque (both average torque and torque ripple) of multiphase doubly salient synchronous reluctance machines (DS-SRMs). Such machines are similar to switched reluctance machines but supplied with sine wave currents. The investigations in this paper are as follows. First, a general analytical torque model based on Fourier series analysis of inductances has been built for machines with different phase numbers, slot/pole number combinations, and also winding configurations. The instantaneous torque for DS-SRMs with any given phase number can then be accurately predicted. Using such model, contribution of each order inductance harmonic to torque can be investigated separately. It is found that the torque ripple frequency of the DS-SRM only depends on phase number. For example, for an m-phase machine, there will be m x kth-order torque ripple if mod(mk, 2) = 0, where m is the phase number and k is a natural number. This paper also explains why certain phase numbers inherently produce lower torque ripple than others. The findings in this paper provide a future direction for potential torque ripple reduction methods either from machine design or advanced control. The simulations have been validated by experiments using a six-phase DS-SRMs.
机译:本文研究了每阶电感谐波对多相双凸极同步磁阻电机(DS-SRM)的转矩(平均转矩和转矩脉动)的影响。这种机器类似于开关磁阻机器,但是提供正弦波电流。本文的研究如下。首先,针对具有不同相数,槽/极数组合以及绕组配置的电机,建立了基于电感的傅里叶级数分析的通用分析转矩模型。然后可以精确预测具有任何给定相数的DS-SRM的瞬时转矩。使用这种模型,可以分别研究每个阶次电感谐波对转矩的贡献。发现DS-SRM的转矩脉动频率仅取决于相数。例如,对于m相电机,如果mod(mk,2)= 0,则将有m x k次转矩脉动,其中m是相数,k是自然数。本文还解释了为什么某些相数固有地产生比其他相低的转矩脉动的原因。本文的发现为机器设计或高级控制中潜在的转矩脉动减小方法提供了未来的方向。仿真已经通过使用六相DS-SRM的实验进行了验证。

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