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Phase Current Reconstruction Algorithm for Four-Phase Switched Reluctance Motor under Direct Torque Control Strategy

机译:直接扭矩控制策略下四相开关磁阻电动机相电流重建算法

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Existing phase current reconstruction algorithms are developed for switched reluctance motor (SRM) operated under current chopping control (CCC), which generates high torque ripple. Therefore, the direct torque control (DTC) technique is mostly used to control the SRM with minimal torque pulsations. However, the reconstruction of phase currents using the existing one or two sensor methods developed under CCC control will be more difficult to adopt for the DTC scheme due to the simultaneous conduction of all phases. To circumvent this issue, a novel DTC method with reduced sensors is introduced in this paper, which exhibits better performance in comparison to the conventional DTC method. The proposed DTC method avoids the long tail currents thereby limits the conduction of all phases simultaneously. The efficacy of the proposed scheme is validated for four-phase SRM through MATLAB simulations. The results show that the proposed approach helps to operate the drive at the lower torque ripple with reduced cost under various operating conditions in comparison to the conventional DTC.
机译:用于在电流斩波控制(CCC)下操作的开关磁阻电动机(SRM)开发了现有的相电流重建算法,其产生高扭矩纹波。因此,直接扭矩控制(DTC)技术主要用于控制具有最小扭矩脉动的SRM。然而,由于同时传导所有阶段,使用根据CCC控制开发的现有的一个或两个传感器方法的相电流的重建将更加难以用于DTC方案。为了避免这个问题,本文介绍了一种具有降低传感器的新型DTC方法,与传统的DTC方法相比,表现出更好的性能。所提出的DTC方法避免了长尾电流,从而限制了同时导通所有阶段的传导。通过Matlab模拟验证了所提出的方案的功效。结果表明,与传统的DTC相比,所提出的方法有助于在各种操作条件下降低成本降低的成本。

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