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Determining the operating region for demagnetization-free fault tolerant control of multiphase PMa-SynRM

机译:确定多相PMA-SYNRM的无磁性容错控制的操作区域

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This paper presents the process of determining demagnetization-free operating region of multi-phase permanent magnet assisted synchronous reluctance motor (PMa-SynRM) under fault tolerant operating condition using finite element analysis (FEA) tool. The five-phase PMa-SynRM has been considered as a suitable candidate for many critical service applications such as aircraft, electric vehicles, and electric ships due to low cost and high fault-tolerance capability. These machines can generate required torque under single or two-phase fault using only the unaffected phases. However, under the fault condition, the air-gap magnetomotive force (MMF) will be distorted and cause additional harmonics loss and torque ripple. Although the adoption of fault tolerant control (FTC) scheme can improve the performance, there will be large rise and fall in the air-gap MMF which can be threatening to the permanent magnet (PM) for irreversible demagnetization. Therefore, multiphase PMa-SynRM should be carefully operated under FTC to avoid the irreversible demagnetization of its PMs. This study determines the demagnetization-free operating region of a 3 kW five-phase rare-earth (NdFeB35) PM based PMa-SynRM under single and two-phase open fault conditions. Finite element analysis (FEA) has been performed for different thermal levels of the PMs to evaluate the operating range of the motor without demagnetization.
机译:本文采用了使用有限元分析(FEA)工具在容错运行条件下确定多相永磁辅助同步电机(PMA-Synrm)的无磁操作区域的过程。由于低成本和高容错能力,五相PMA-Synrm被认为是许多关键服务应用的适用候选者,例如飞机,电动车辆和电动船。这些机器可以仅使用未受影响的阶段在单相故障下产生所需的扭矩。然而,在断层状态下,气隙磁影力(MMF)将被扭曲并导致额外的谐波损耗和扭矩脉动。虽然采用容错控制(FTC)方案可以提高性能,但在空中间隙MMF中会有很大的上升和落下,这可以威胁到永磁体(PM)以进行不可逆的退磁。因此,应在FTC下仔细操作多相PMA-SYNRM,以避免其PMS的不可逆的退磁。本研究在单相和两相开放故障条件下确定基于3 kW五相稀土(NDFEB35)PM的PMA-Synrm的不含去磁操作区域。已经针对PM的不同热电平进行了有限元分析(FEA),以评估电动机的操作范围而不进行去磁。

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