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Study of Copper Loss by Inter Turn short fault of Interior Permanent Magnet Synchronous Motor

机译:内部永磁同步电动机匝间隙晶体铜损耗研究

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The winding of the motor stator coil can be faulted due to high voltage, high temperature stress and etc. In the ITF (Inter Turn Fault) winding, large fault current, ohmic loss, and excessive winding heat are induced. As a result, fault aggravation and machine burning might happen unless adequate fault diagnosis and management are equipped. By limiting the copper loss by the ITF, the faulted motor could operate without aggravation till the adequate fault management action is performed. In this paper, an IPMSM (Interior Permanent Magnet Synchronous Motor) ITF tolerant drive method by limiting internal copper loss is proposed. The copper loss by the ITF is made simple for the proposed method and analyzed with various current, speed, and output torque condition. By maximizing the output torque with minimum IPMSM copper losses, MTPL (Maximum Torque Per Loss) operation point is suggested. Compared with the MTPA (Maximum Torque Per Ampere) the MTPL is more efficient operation point with ITF. To verify the proposed method, experiment studies are performed with an IPMSM with an ITF. The results show the feasibility and practicality of the proposed method.
机译:电动机定子线圈的绕组可能由于高电压,高温胁迫等,ITF(变频故障)绕组,大故障电流,欧姆损耗和过度绕组热量而导致。结果,除非配备了足够的故障诊断和管理,否则可能会发生故障恶化和机器燃烧。通过限制ITF的铜损,故障电机可以在不加重的情况下运行,直到执行足够的故障管理动作。本文提出了通过限制内部铜损的IPMSM(内部永磁同步电动机)ITF耐受驱动方法。对于所提出的方法,ITF的铜损耗简单,并以各种电流,速度和输出扭矩条件分析。通过最大化具有最小IPMSM铜损耗的输出扭矩,提出了MTPL(每个损耗的最大扭矩)操作点。与MTPA(每个安培的最大扭矩)相比,MTPL与ITF具有更有效的操作点。为了验证所提出的方法,使用ITF的IPMSM进行实验研究。结果表明了该方法的可行性和实用性。

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