双三相PMSM全转矩操作范围容错控制,铜损耗最小

Haolin Zheng, X. Pei, C. Brace
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摘要

本文研究了双三相永磁同步电动机(DT-PMSM)在高负荷、高转速下的单次开路故障(OCF),该电动机适用于要求宽转速范围和转矩运行范围(TOR)的交通运输。在已有的最小损耗和最大转矩容错控制策略的基础上,提出了一种在全转速范围内实现最小损耗的控制方案。最小损耗(ML)策略允许在参考速度下以最小的铜损耗提供所需的扭矩。最大转矩(MT)策略在不超过电流限制的情况下提供了更大的故障后运行转矩能力,而定子绕组内的铜损耗没有得到优化。然而,这两种策略的允许TOR存在差距。当达到ML的TOR极限时,简单地将策略从ML切换到MT,会导致铜损失过多,这是可以消除的。本文提出的全扭矩操作范围最小损耗(FTOR-ML)将减轻铜的过度损耗。在单中性点(1N)和隔离中性点(2N)的OCF下,用于DT-PMSM的新型FTOR-ML结合了ML和MT的优点,其中MT的整个TOR被保留,铜损失最小。本文推导了FTOR-ML的解析解。仿真结果验证了所提控制方案的优越性。
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Full Torque Operation Range Fault-Tolerant Control with Minimum Copper Loss for Dual Three-Phase PMSM
This paper studies the single open-circuit failure (OCF) in dual three-phase permanent magnet synchronous motor (DT-PMSM) at high load and motor speed for application in transportation that requires wide speed range and torque operation range (TOR). A new control scheme is proposed to achieve minimum loss in full speed range based on the well-established fault-tolerant control strategy minimum loss (ML) and maximum torque (MT). The minimum loss (ML) strategy allows demanded torque at reference speed to be delivered with minimum copper loss. The maximum torque (MT) strategy presents wider torque capability in postfault operation without exceeding current limit, while copper loss within the stator winding is not optimized. However, there is a gap in the permissible TOR of these two strategies. Simple switch of strategies, from ML to MT when the limit of ML's TOR is reached, would result in excessive copper loss, which can potentially be eliminated. The proposed full-torque-operation-range minimum loss (FTOR-ML) in this paper will mitigate the excessive copper loss. The novel FTOR-ML for the DT-PMSM under OCF with both single (1N) and isolated neutral point (2N) has combined the merit of ML and MT where the entire TOR of MT is conserved with minimum copper loss. The analytical solution of FTOR-ML is derived in this paper. The simulation results validate the superiority of the proposed control scheme.
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