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DC-Current Injection With Minimum Torque Ripple in Interior Permanent-Magnet Synchronous Motors

机译:DC电流注入内部永磁同步电动机中的最小扭矩纹波

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摘要

Several proposals based on dc-current injection have been reported for estimating the stator winding resistance in induction machines, and recently extended for synchronous machines. Tracking this resistance can be very useful, e.g., for thermal monitoring or preserving control dynamics. In surface-mounted permanent-magnet synchronous machines (PMSMs), it is possible to inject a dc component in the d-axis, without perturbing the torque. However, it has been claimed that, for synchronous machines with saliency, it is not possible to avoid the torque ripple due to such injection. This letter proposes optimum reference currents to impose dc current in three-phase interior PMSMs while minimizing to practically zero its associated torque ripple. Namely, the dc signal is injected in combination with a suitable second-order harmonic so that the stator current space vector follows the constant-torque locus, while the fundamental is set according to the maximum-torque-per-ampere strategy. Experimental results validate the theory.
机译:据报道,基于直流电流注入的若干提案用于估计感应机器中的定子绕组阻力,最近延伸为同步机。跟踪这种电阻可以非常有用,例如,用于热监测或保存控制动态。在表面安装的永磁同步机(PMSMS)中,可以在D轴上注入DC分量,而不会扰动扭矩。然而,已经声称,对于具有显着性的同步机,可以避免由于这种注射引起的扭矩脉动。这封信提出了最佳的参考电流来强加三相内部PMSMS中的DC电流,同时最小化以实际上为其相关的扭矩脉动。即,直流信号与合适的二阶谐波结合地注入,使得定子电流空间矢量遵循恒定扭矩轨迹,而基本则根据最大扭矩 - 每安培策略设置。实验结果验证了理论。

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