电动滑板车IPMSM在线损耗最小化控制

M. Cao
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引用次数: 12

摘要

提出了一种减小内嵌式永磁同步电动机电损(铜损和铁损)的控制方法。到目前为止,作者提出了一种基于查表的每电枢最大转矩电流控制策略。这是一种减少铜损失的控制。同时,由于铁损在高速区域急剧增加,导致效率下降。本文首先讨论了考虑铁损的模型,阐明了电损与d-q轴电流、电机转矩、电机转速的关系。接下来,进行测量实验以证明存在一个最佳电枢电流相位,该相位在给定电机速度和负载转矩下最大限度地减少电损耗。然后,提出了一种基于最速下降法的在线损失最小化算法(黄金分割法)。将id=3D0控制和损耗最小化控制下的电损耗与实验结果进行了比较。实验验证了所提控制方法的有效性。
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Online Loss Minimization Control of IPMSM for Electric Scooters
An electrical losses (copper and iron losses) minimization control of interior permanent magnet synchronous motors is proposed in this paper. Until now a Look-up Table based maximum torque per armature current control strategy was proposed by authors. That is a control to minimize copper losses. Meanwhile, the efficiency deteriorates as a result that the iron losses increase sharply in high speed area. In this paper, a model considering iron losses is discussed and the relationship between the electrical losses and d-q axes current, motor torque, motor speed is clarified at first. Next, measurement experiments are made to prove that there is an optimal armature current phase which minimize the electrical losses for given motor speed and load torque. Then, an online loss minimization algorithm with steepest descent method (golden section method) is proposed. The electrical losses in id=3D0 control and loss minimization control are compared with experiment results. The effectiveness of the proposed control is verified by experiments.
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